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Tagawa, Masatomo

Graduate School of Agriculture, Division of Applied Biosciences Associate Professor

Tagawa, Masatomo
list
    Last Updated :2025/06/02

    Basic Information

    Faculty

    • 農学部

    Professional Memberships

    • 日本水産学会
    • 日本比較内分泌学会
    • 日本動物学会

    Academic Degree

    • 理学修士(東京大学)
    • 理学博士(東京大学)

    Language of Instruction

    • English

    ID,URL

    researchmap URL

    list
      Last Updated :2025/06/02

      Research

      Research Topics, Overview of the research

      • Research Topics

        Endocrinological approach to larval-juvenile transformation in early life history of marine organisms, focusing on understanding and prevention of malformation in hatchery-reared individuals
      • Overview of the research

        In Japan, stock enhancement programs (seed production - release to the sea - recapture by fishery) are intensively and extensively taken place for marine resource organisms. However, in various fishes including flatfish, malformation frequently occurs during the seed production, and is recognized as a major obstacle for stable production of healthy juveniles required for the release and for aquaculture. For the prevention of malformation, deep understanding on the physiology of normal morphogenesis is necessary. We are tentatively focusing on endocrinological and environmental factors related to larva to juvenile transformation (metamorphosis in fish), and trying to clarify the fundamental mechanisms of malformation.

      Research Interests

      • 変態
      • 魚類生理学
      • 比較内分泌
      • Metamorphosis
      • Fish Physiology
      • Comparative Endocrinology

      Research Areas

      • Life sciences, Aquaculture
      • Life sciences, Animals: biochemistry, physiology, behavioral science

      Papers

      • Ontogenetic transition from aquatic to amphibious life in the mudskipper, Periophthalmus modestus
        Shoichi Inaba; Masatomo Tagawa; Yuzuru Utsunomiya; Atsushi Ishimatsu
        Zoology, May 2024, Peer-reviewed
      • Correction to: Prevention of hypermelanosis by rearing Japanese flounder Paralichthys olivaceus in net‑lined tanks (Fisheries Science, (2020), 86, 1, (127-136), 10.1007/s12562-019-01369-1)
        Koei Mizutani; Toshiyuki Yamada; Keita W. Suzuki; Reiji Masuda; Kuniaki Nakata; Masatomo Tagawa
        Fisheries Science, 01 May 2021
      • An effective and practical method of net settings in rearing tank to suppress hypermelanosis in Japanese flounder
        Tsuyoshi Onoyama; Toshiyuki Yamada; Masatomo Tagawa
        Fisheries Science, May 2022, Peer-reviewed, Corresponding author
      • Prevention of hypermelanosis by rearing Japanese flounder Paralichthys olivaceus in net-lined tanks
        Koei Mizutani; Toshiyuki Yamada; Keita W. Suzuki; Reiji Masuda; Kuniaki Nakata; Masatomo Tagawa
        Fisheries Science, Jan. 2020, Peer-reviewed, Corresponding author
      • Cortisol promotes staining-type hypermelanosis in juvenile Japanese flounder
        Nao Matsuda; Ikki Yamamoto; Reiji Masuda; Masatomo Tagawa
        Aquaculture, Aug. 2018, Peer-reviewed
      • Left-right pigmentation pattern of Japanese flounder corresponds to expression levels of melanocortin receptors (MC1R and MC5R), but not to agouti signaling protein 1 (ASIP1) expression
        Nao Matsuda; Satoshi Kasagi; Toru Nakamaru; Reiji Masuda; Akiyoshi Takahashi; Masatomo Tagawa
        General and Comparative Endocrinology, 01 Jun. 2018, Peer-reviewed
      • Undulated flooring in the rearing tank decreases hypermelanosis in Japanese flounder Paralichthys olivaceus
        Kuniaki Nakata; Ikki Yamamoto; Yoshifumi Miyama; Toru Nakamaru; Reiji Masuda; Masatomo Tagawa
        FISHERIES SCIENCE, Nov. 2017, Peer-reviewed
      • Comparison of UV-B tolerance between wild-Type and albino Japanese flounder Paralichthys olivaceus juveniles
        Yuichi Fukunishi; Reiji Masuda; Tadahisa Seikai; Mitsuo Nakamura; Masatomo Tagawa; Yoh Yamashita
        Aquaculture Science, 2017, Peer-reviewed
      • Possible involvement of endocrine systems in malformation of heterosomata
        Masatomo Tagawa
        Nippon Suisan Gakkaishi (Japanese Edition), 2016, Peer-reviewed
      • Transplantation of pigmented and non-pigmented scales into the ocular and blind sides of the Japanese flounder Paralichthys olivaceus, suggesting the presence of ocular-side characteristic inducer in pigmented scales
        Toshinori Isojima; Masatomo Tagawa
        FISHERIES SCIENCE, Sep. 2014, Peer-reviewed
      • Effects of time and duration of rearing with bottom sand on the occurrence and expansion of staining-type hypermelanosis in the Japanese flounder Paralichthys olivaceus
        Toshinori Isojima; Naoshi Makino; Yoshifumi Miyama; Masatomo Tagawa
        FISHERIES SCIENCE, Jul. 2014, Peer-reviewed
      • Developmental changes in melanophores and their asymmetrical responsiveness to melanin-concentrating hormone during metamorphosis in barfin flounder (Verasper moseri)
        Naoki Yoshikawa; Taihei Matsuda; Akiyoshi Takahashi; Masatomo Tagawa
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Dec. 2013, Peer-reviewed
      • Progression of staining-type hypermelanosis on the blind side in normally metamorphosed juveniles and pigmentation progression in pseudoalbino juveniles of the Japanese flounder Paralichthys olivaceus using individual identification
        Toshinori Isojima; Naoshi Makino; Masato Takakusagi; Masatomo Tagawa
        FISHERIES SCIENCE, Sep. 2013, Peer-reviewed
      • Formation process of staining-type hypermelanosis in Japanese flounder juveniles revealed by examination of chromatophores and scales
        Toshinori Isojima; Hirohito Tsuji; Reiji Masuda; Masatomo Tagawa
        FISHERIES SCIENCE, Mar. 2013, Peer-reviewed
      • Evidence for an ontogenetic change from pre-programmed to meal-responsive cck production in Atlantic herring, Clupea harengus L.
        Yuko Kamisaka; Jon Vidar Helvik; Masatomo Tagawa; Masaru Tanaka; Ivar Ronnestad
        COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY A-MOLECULAR & INTEGRATIVE PHYSIOLOGY, Jan. 2013, Peer-reviewed
      • Pseudoalbinism and ambicoloration in hatchery-reared pleuronectids as malformations of asymmetrical formation
        Masato Aritaki; Masatomo Tagawa
        FISHERIES SCIENCE, Mar. 2012, Peer-reviewed
      • Further evidence on acetylation-induced inhibition of the pigment-dispersing activity of alpha-melanocyte-stimulating hormone
        Yuki Kobayashi; Kanta Mizusawa; Hiroaki Chiba; Masatomo Tagawa; Akiyoshi Takahashi
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Mar. 2012, Peer-reviewed
      • Gonadal development of the primitive flatfish Psettodes erumei in Kota Kinabalu, Sabah, Malaysia.
        Naoki Yoshikawa; Thamootharan Mammaran; Elvin Michael Bavoh; Masaru Tanaka; Masatomo Tagawa
        Aquaculture Sci. ,60,475-483, 2012, Peer-reviewed
      • Induction of ambicoloration by exogenous cortisol during metamorphosis of spotted halibut Verasper variegatus
        Toshiyuki Yamada; Hayato Donai; Masanori Okauchi; Masatomo Tagawa; Kazuo Araki
        COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY B-BIOCHEMISTRY & MOLECULAR BIOLOGY, Dec. 2011, Peer-reviewed
      • Ontogenetic changes of habitat selection and thyroid hormone levels in black rockfish (Sebastes schlegelii) reared in captivity
        Byung-Sun Chin; Masahiro Nakagawa; Masatomo Tagawa; Reiji Masuda; Yoh Yamashita
        ICHTHYOLOGICAL RESEARCH, Jul. 2010, Peer-reviewed
      • Dual appearance of xanthophores, and ontogenetic changes in other pigment cells during early development of Japanese flounder Paralichthys olivaceus
        Mitsuo Nakamura; Tadahisa Seikai; Masato Aritaki; Reiji Masuda; Masaru Tanaka; Masatomo Tagawa
        FISHERIES SCIENCE, Mar. 2010, Peer-reviewed
      • Faster growth before metamorphosis leads to a higher risk of pseudoalbinism in juveniles of the starry flounder Platichthys stellatus, as suggested by otolith back-calculation
        Taizo Nishikawa; Masato Aritaki; Daisuke Shimizu; Toshihiro Wada; Masaru Tanaka; Masatomo Tagawa
        Fisheries Science, 2010, Peer-reviewed
      • Defective fin regeneration in medaka fish (Oryzias latipes) with hypothyroldism
        Koshin Sekirnizu; Masatomo Tagawa; Hiroyuki Takeda
        ZOOLOGICAL SCIENCE, Jul. 2007, Peer-reviewed
      • Changes on cortisol level and digestive enzyme activity in juveniles of Japanese flounder, Paralichthys olivaceus, exposed to different salinity regimes
        Sergio Nestor Bolasina; Masatomo Tagawa; Yoh Yamashita
        AQUACULTURE, Jun. 2007, Peer-reviewed
      • Effect of stocking density on growth, digestive enzyme activity and cortisol level in larvae and juveniles of Japanese flounder, Paralichthys olivaceus
        Sergio Bolasina; Masatomo Tagawa; Yoh Yamashita; Masaru Tanaka
        AQUACULTURE, Sep. 2006, Peer-reviewed
      • Ocular and blind sides in flatfishes - Mechanism of asymmetrical differentiation and its anomalies in heterosomata - Abstracts
        T Seikai; M Tagawa; M Aritaki
        NIPPON SUISAN GAKKAISHI, Nov. 2005, Peer-reviewed
      • Production of symmetrical flatfish by controlling the timing of thyroid hormone treatment in spotted halibut Verasper variegatus
        M Tagawa; M Aritaki
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Apr. 2005, Peer-reviewed
      • Cholecystokinin mRNA in Atlantic herring, Clupea harengus - molecular cloning, characterization, and distribution in the digestive tract during the early life stages
        Y Kamisaka; O Drivenes; T Kurokawa; M Tagawa; Ronnestad, I; M Tanaka; JV Helvik
        PEPTIDES, Mar. 2005, Peer-reviewed
      • Thyroid hormone deficiency in abnormal larvae of the Japanese flounder Paralichthys olivaceus
        N Okada; T Morita; M Tanaka; M Tagawa
        FISHERIES SCIENCE, Feb. 2005, Peer-reviewed
      • Histological observation of the pituitary-thyroid axis of a neotenic fish (the ice fish, Salangichthys microdon)
        Y Harada; K Kuwamura; Kinoshita, I; M Tanaka; M Tagawa
        FISHERIES SCIENCE, Feb. 2005, Peer-reviewed
      • 排砂に伴う濁りが魚類に与える生理的影響とその評価法
        木下篤彦; 藤田正治; 田川正朋; 水山高久; 澤田豊明
        砂防学会誌, 2005, Peer-reviewed
      • Involvement of thyroid hormone in the determination of left-right asymmetry during flatfish metamorphosis
        Masatomo Tagawa
        Nippon Suisan Gakkaishi (Japanese Edition), 2005, Peer-reviewed
      • Effect of stocking density and addition of proteins on larval survival in Japanese flounder, Paralichthys olivaceus
        M Tagawa; T Kaji; M Kinoshita; M Tanaka
        AQUACULTURE, Feb. 2004, Peer-reviewed
      • Temperature effects on larval development and occurrence of metamorphosis-related morphological abnormalities in hatchery-reared spotted halibut Verasper variegatus juveniles
        Masato Aritaki; Kengo Ohta; Yuuji Hotta; Masatomo Tagawa; Masaru Tanaka
        Nippon Suisan Gakkaishi (Japanese Edition), Jan. 2004, Peer-reviewed
      • Temperature effects on larval development and occurrence of metamorphosis-related morphological abnormalities in hatchery-reared spotted halibut Verasper variegatus juveniles
        M Aritaki; K Ohta; Y Hotta; M Tagawa; M Tanaka
        NIPPON SUISAN GAKKAISHI, Jan. 2004, Peer-reviewed
      • Changes in growth performance and proximate composition in Japanese flounder during metamorphosis
        MAR Hossain; M Tagawa; R Masuda; M Tanaka
        JOURNAL OF FISH BIOLOGY, Nov. 2003, Peer-reviewed
      • Distribution of cholecystokinin-immunoreactive cells in the digestive tract of the larval teleost, ayu, Plecoglossus altivelis
        Y Kamisaka; Y Fujii; S Yamamoto; T Kurokawa; Ronnestad, I; GK Totland; M Tagawa; M Tanaka
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Nov. 2003, Peer-reviewed
      • Histological study of deformity in eye location in Japanese flounder Paralichthys olivaceus
        N Okada; M Tanaka; M Tagawa
        FISHERIES SCIENCE, Aug. 2003, Peer-reviewed
      • Thyroid gland development in a neotenic goby (ice goby, Leucopsarion petersii) and a common goby (Ukigori, Gymnogobius urotaenia) during early life stages
        Y Harada; S Harada; Kinoshita, I; M Tanaka; M Tagawa
        ZOOLOGICAL SCIENCE, Jul. 2003, Peer-reviewed
      • Response of a neotenic goby, ice goby (Leucopsarion petersii), to thyroid hormone and thiourea treatments
        Y Harada; L Kinoshita; T Kaneko; S Moriyama; M Tanaka; M Tagawa
        ZOOLOGICAL SCIENCE, Jul. 2003, Peer-reviewed
      • Fine structure of soft and hard tissues involved in eye migration in metamorphosing Japanese flounder (Paralichthys olivaceus)
        N Okada; Y Takagi; M Tanaka; M Tagawa
        ANATOMICAL RECORD PART A-DISCOVERIES IN MOLECULAR CELLULAR AND EVOLUTIONARY BIOLOGY, Jul. 2003, Peer-reviewed
      • Thyroid gland development in a neotenic goby (ice goby, Leucopsarion petersii) and a common goby (Ukigori, Gymnogobius urotaenia) during early life stages
        Y Harada; S Harada; Kinoshita, I; M Tanaka; M Tagawa
        ZOOLOGICAL SCIENCE, Jul. 2003, Peer-reviewed
      • Prevention of surface death of marine fish larvae by the addition of egg white into rearing water
        T Kaji; M Kodama; H Arai; M Tanaka; M Tagawa
        AQUACULTURE, Jun. 2003, Peer-reviewed
      • Precocious development of the digestive system in relation to early appearance of piscivory in striped bonito Sarda orientalis larvae
        T Kaji; M Kodama; H Arai; M Tagawa; M Tanaka
        FISHERIES SCIENCE, Dec. 2002, Peer-reviewed
      • Ontogeny of cholecystokinin-immunoreactive cells in the digestive tract of bluefin tuna, Thunnus thynnus, larvae
        Y Kamisaka; T Kaji; S Masuma; N Tezuka; T Kurokawa; T Suzuki; GK Totland; Ronnestad, I; M Tagawa; M Tanaka
        SARSIA, Sep. 2002, Peer-reviewed
      • Effects of thyroxine and thiourea on the metamorphosis of coral trout grouper Plectropomus leopardus
        DD Trijuno; K Yoseda; J Hirokawa; M Tagawa; M Tanaka
        FISHERIES SCIENCE, Apr. 2002, Peer-reviewed
      • Isolation and characterization of a Japanese flounder clonal line, reversed, which exhibits reversal of metamorphic left-right asymmetry
        H Hashimoto; A Mizuta; N Okada; T Suzuki; M Tagawa; K Tabata; Y Yokoyama; M Sakaguchi; M Tanaka; H Toyohara
        MECHANISMS OF DEVELOPMENT, Feb. 2002, Peer-reviewed
      • 魚類の変態と初期生残(総説)
        田川正朋; 中山耕至; 田中克
        月刊海洋, 2002
      • Development and metamorphosis in coral trout, Plectropomus leopardus: morphological, biochemical and physiological aspects
        Dody D. Trijuno; Satoshi Shiozawa; Kenzo Yoseda; Masatomo Tagawa; Masaru Tanaka
        FISHERIES SCIENCE, 2002, Peer-reviewed
      • Changes in tissue thyroid hormone levels of metamorphosing spotted halibut Verasper variegatus reared at different temperatures
        Y Hotta; M Aritaki; M Tagawa; M Tanaka
        FISHERIES SCIENCE, Dec. 2001, Peer-reviewed
      • Thyroid hormones in metamorphosing larvae of brown sole Pleuronectes herzensteini reared at different temperatures
        Y Hotta; M Aritaki; M Tagawa; M Tanaka
        NIPPON SUISAN GAKKAISHI, Nov. 2001, Peer-reviewed
      • Ontogeny of ACTH and MSH cells in Japanese flounder (Paralichthys olivaceus) in relation to albinism
        A Estevez; T Kaneko; T Seikai; RM Dores; M Tagawa; M Tanaka
        AQUACULTURE, Oct. 2001, Peer-reviewed
      • Ontogeny of cholecystokinin-immunoreactive cells in the digestive tract of Atlantic halibut, Hippoglossus hippoglossus, larvae
        Y Kamisaka; GK Totland; M Tagawa; T Kurokawa; T Suzuki; M Tanaka; Ronnestad, I
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Jul. 2001, Peer-reviewed
      • Entry of thyroid hormones into tilapia oocytes
        M Tagawa; CL Brown
        COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY B-BIOCHEMISTRY & MOLECULAR BIOLOGY, Jun. 2001, Peer-reviewed
      • Asymmetrical development of bones and soft tissues during eye migration of metamorphosing Japanese flounder, Paralichthys olivaceus
        N Okada; Y Takagi; T Seikai; M Tanaka; M Tagawa
        CELL AND TISSUE RESEARCH, Apr. 2001, Peer-reviewed
      • ACTH and MSH production in Japanese flounder (Paralichthys olivaceus) larvae fed arachidonic acid-enriched live prey
        A Estevez; T Kaneko; T Seikai; M Tagawa; M Tanaka
        AQUACULTURE, Jan. 2001, Peer-reviewed
      • Development of the digestive system and metamorphosis relating hormones in spotted halibut larvae and early juveniles
        Y Hotta; H Aritaki; K Ohta; M Tagawa; M Tanaka
        NIPPON SUISAN GAKKAISHI, Jan. 2001, Peer-reviewed
      • Development of the digestive system and metamorphosis relating hormones in spotted halibut larvae and early juveniles
        Yuji Hotta; Masato Aritaki; Kengo Ohta; Masatomo Tagawa; Masaru Tanaka
        Nippon Suisan Gakkaishi (Japanese Edition), 2001, Peer-reviewed
      • Thyroid hormones in metamorphosing larvae of brown sole Pleuronectes herzensteini reared at different temperatures
        Yuji Hotta; Masato Aritaki; Masatomo Tagawa; Masaru Tanaka
        Nippon Suisan Gakkaishi (Japanese Edition), 2001, Peer-reviewed
      • ホシガレイの初期生活史:飼育実験による変態・着底過程の解明(総説)
        堀田又治; 有瀧真人; 田川正朋; 田中克
        栽培技研, 2001, Peer-reviewed
      • Incorporation and metabolism of cortisol in oocytes of Tilapia (Oreochromis mossambicus)
        M Tagawa; K Suzuki; JL Specker
        JOURNAL OF EXPERIMENTAL ZOOLOGY, Dec. 2000, Peer-reviewed
      • Effect of thyroid hormones on the stage-specific pigmentation of the Japanese flounder Paralichthys olivaceus
        JH Yoo; T Takeuchi; M Tagawa; T Seikai
        ZOOLOGICAL SCIENCE, Nov. 2000, Peer-reviewed
      • Parr-smolt transformation in Atlantic salmon: thyroid hormone deiodination in liver and brain and endocrine correlates of change in rheotactic behavior
        JL Specker; JG Eales; M Tagawa; WA Tyler
        CANADIAN JOURNAL OF ZOOLOGY-REVUE CANADIENNE DE ZOOLOGIE, May 2000, Peer-reviewed
      • Laboratory study of density-dependent survival after handling in yolk-sac larvae of tunas and a grouper
        T Kaji; M Tanaka; M Tagawa
        FISHERIES SCIENCE, Apr. 1999, Peer-reviewed
      • Semi-annual reproductive cycle of a small flounder Tarphops oligolepis in Wakasa Bay
        Y Kamisaka; M Tagawa; M Tanaka
        FISHERIES SCIENCE, Feb. 1999, Peer-reviewed
      • Distributional changes in branchial chloride cells during freshwater adaptation in Japanese sea bass Lateolabrax japonicus
        N Hirai; M Tagawa; T Kaneko; T Seikai; M Tanaka
        ZOOLOGICAL SCIENCE, Feb. 1999, Peer-reviewed
      • Developmental changes in tissue thyroid hormones and cortisol in Japanese sea bass Lateolabrax japonicus larvae and juveniles
        R Perez; M Tagawa; T Seikai; N Hirai; Y Takahashi; M Tanaka
        FISHERIES SCIENCE, Feb. 1999, Peer-reviewed
      • Improvement of Larval Survival by 3,3',5-triiodo-L-thyronine (T3) Immersion in Red Spotted Grouper
        YAMANOI Hideo; KONNDOU Masayoshi; FUJII Yoshihiro; TAGAWA Masatomo
        水産増殖, 1999, Peer-reviewed
      • Temporal changes in liver carbohydrate metabolism associated with seawater transfer in Oreochromis mossambicus
        K Nakano; M Tagawa; A Takemura; T Hirano
        COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY B-BIOCHEMISTRY & MOLECULAR BIOLOGY, Apr. 1998, Peer-reviewed
      • Localization of cortisol receptor in branchial chloride cells in chum salmon fry
        K Uchida; T Kaneko; M Tagawa; T Hirano
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Feb. 1998, Peer-reviewed
      • Whole-body cortisol concentrations and ontogeny of aggressive behavior in yellowtail (Seriola quinqueradiata Temminck & Schlegel, Carangidae)
        Y Sakakura; M Tagawa; K Tsukamoto
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Feb. 1998, Peer-reviewed
      • Developmental changes in low-salinity tolerance and responses of prolactin, cortisol and thyroid hormones to low-salinity environment in larvae and juveniles of Japanese flounder, Paralichthys olivaceus
        J Hiroi; Y Sakakura; M Tagawa; T Seikai; M Tanaka
        ZOOLOGICAL SCIENCE, Dec. 1997, Peer-reviewed
      • Changes in plasma insulin-like growth factor-I levels in the precociously maturing amago salmon, Oncorhynchus masou ishikawai
        S Moriyama; H Shimma; M Tagawa; H Kagawa
        FISH PHYSIOLOGY AND BIOCHEMISTRY, Dec. 1997, Peer-reviewed
      • Developmental changes in low-salinity tolerance and responses of prolactin, cortisol and thyroid hormones to low-salinity environment in larvae and juveniles of Japanese flounder, Paralichthys olivaceus
        J Hiroi; Y Sakakura; M Tagawa; T Seikai; M Tanaka
        ZOOLOGICAL SCIENCE, Dec. 1997, Peer-reviewed
      • Partial cloning of the hormone-binding domain of the cortisol receptor in tilapia, Oreochromis mossambicus, and changes in the mRNA level during embryonic development
        M Tagawa; H Hagiwara; A Takemura; S Hirose; T Hirano
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Oct. 1997, Peer-reviewed
      • Effects of ambient salinities on carbohydrate metabolism in two species of tilapia Oreochromis mossambicus and O-niloticus
        K Nakano; M Tagawa; A Takemura; T Hirano
        FISHERIES SCIENCE, Jun. 1997, Peer-reviewed
      • Improved seed production of goldstriped amberjack Seriola lalandi under hatchery conditions by injection of triiodothyronine (T-3) to broodstock fish
        K Tachihara; MK ElZibdeh; A Ishimatsu; M Tagawa
        JOURNAL OF THE WORLD AQUACULTURE SOCIETY, Mar. 1997, Peer-reviewed
      • Thyroid hormones and cortisol in fish unfertilized eggs.
        田川 正朋
        Newsletter of Japan Society for Comparative Endocrinology, 1997, Invited
      • 魚類の発生初期における甲状腺ホルモンの動態と役割(総説)
        田川 正朋
        日本水産学会誌, 1997, Peer-reviewed, Invited
      • Effect of triiodothyronine injection of broodstock fish on seed production in cultured seawater fish
        Mohammad Kalil El-Zibdeh; Katsunori Tachihara; Yasuo Tsukashima; Masatomo Tagawa; Atsushi Ishimatsu
        Suisanzoshoku, 1996, Peer-reviewed
      • Development of the pituitary, thyroid and interrenal glands and applications of endocrinology to the improved rearing of marine fish larvae
        M Tanaka; JB Tanangonan; M Tagawa; EG deJesus; H Nishida; M Isaka; R Kimura; T Hirano
        AQUACULTURE, Oct. 1995, Peer-reviewed
      • HYPOOSMOREGULATORY ABILITY OF EYED STAGE EMBRYOS OF CHUM SALMON
        T KANEKO; S HASEGAWA; Y TAKAGI; M TAGAWA; T HIRANO
        MARINE BIOLOGY, Mar. 1995, Peer-reviewed
      • THYROID-HORMONE CONCENTRATIONS IN THE GONADS OF WILD CHUM SALMON DURING MATURATION
        M TAGAWA; T OGASAWARA; T SAKAMOTO; T MIURA; K YAMAUCHI; T HIRANO
        FISH PHYSIOLOGY AND BIOCHEMISTRY, Jul. 1994, Peer-reviewed
      • EFFECTS OF ACCLIMATION TO HYPERTONIC ENVIRONMENT ON PLASMA AND PITUITARY LEVELS OF 2 PROLACTINS AND GROWTH-HORMONE IN 2 SPECIES OF TILAPIA, OREOCHROMIS-MOSSAMBICUS AND OREOCHROMIS-NILOTICUS
        FG AYSON; T KANEKO; M TAGAWA; S HASEGAWA; EG GRAU; RS NISHIOKA; DS KING; HA BERN; T HIRANO
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Jan. 1993, Peer-reviewed
      • DEVELOPMENTAL-CHANGES IN TISSUE THYROID-HORMONE LEVELS OF RED-SEA BREAM PAGRUS-MAJOR
        R KIMURA; M TAGAWA; M TANAKA; T HIRANO
        NIPPON SUISAN GAKKAISHI, May 1992, Peer-reviewed
      • A THYROXINE SURGE DURING DEVELOPMENT OF BLACK-SEA BREAM LARVAE AND ITS ECOLOGICAL IMPLICATION IN INSHORE MIGRATION
        M TANAKA; R KIMURA; M TAGAWA; T HIRANO
        NIPPON SUISAN GAKKAISHI, Oct. 1991, Peer-reviewed
      • EFFECTS OF VARIOUS ADENOHYPOPHYSEAL HORMONES OF CHUM SALMON ON THYROXINE RELEASE INVITRO IN THE MEDAKA, ORYZIAS-LATIPES
        DK OKIMOTO; M TAGAWA; Y KOIDE; EG GRAU; T HIRANO
        ZOOLOGICAL SCIENCE, Jun. 1991, Peer-reviewed
      • EFFECTS OF THYROID-HORMONE DEFICIENCY IN EGGS ON EARLY DEVELOPMENT OF THE MEDAKA, ORYZIAS-LATIPES
        M TAGAWA; T HIRANO
        JOURNAL OF EXPERIMENTAL ZOOLOGY, Mar. 1991, Peer-reviewed
      • CHANGES IN WHOLE-BODY CONCENTRATIONS OF THYROID-HORMONES AND CORTISOL IN METAMORPHOSING CONGER EEL
        K YAMANO; M TAGAWA; EG DEJESUS; T HIRANO; S MIWA; Y INUI
        JOURNAL OF COMPARATIVE PHYSIOLOGY B-BIOCHEMICAL SYSTEMIC AND ENVIRONMENTAL PHYSIOLOGY, 1991, Peer-reviewed
      • Thyroid function in metamorphosing toad (Bufo Japonicus) tadpoles
        Kazuhiko Niinuma; Masatomo Tagawa; Tetsuya Hirano; Sakae Kikuyama
        Zoological Science, 1991, Peer-reviewed
      • THYROID-HORMONES IN EGGS OF VARIOUS FRESH-WATER, MARINE AND DIADROMOUS TELEOSTS AND THEIR CHANGES DURING EGG DEVELOPMENT
        M TAGAWA; M TANAKA; S MATSUMOTO; T HIRANO
        FISH PHYSIOLOGY AND BIOCHEMISTRY, Nov. 1990, Peer-reviewed
      • DOWNSTREAM MIGRATORY BEHAVIOR AND PLASMA THYROXINE LEVELS OF BIWA SALMON ONCORHYNCHUS-RHODURUS
        Y FUJIOKA; S FUSHIKI; M TAGAWA; T OGASAWARA; T HIRANO
        NIPPON SUISAN GAKKAISHI, Nov. 1990, Peer-reviewed
      • CHANGES IN THYROID-HORMONE CONCENTRATIONS DURING EARLY DEVELOPMENT AND METAMORPHOSIS OF THE FLOUNDER, PARALICHTHYS-OLIVACEUS
        M TAGAWA; S MIWA; Y INUI; EG DEJESUS; T HIRANO
        ZOOLOGICAL SCIENCE, Feb. 1990, Peer-reviewed
      • SEASONAL-CHANGES IN PLASMA THYROXINE LEVELS IN BIWA AND AMAGO SALMON REARED IN THE POND
        Y FUJIOKA; S FUSHIKI; M TAGAWA; T OGASAWARA; T HIRANO
        NIPPON SUISAN GAKKAISHI, Feb. 1990, Peer-reviewed
      • CHANGES IN TISSUE AND BLOOD-CONCENTRATIONS OF THYROID-HORMONES IN DEVELOPING CHUM SALMON
        M TAGAWA; T HIRANO
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Dec. 1989, Peer-reviewed
      • EFFECTS OF THYROID-HORMONES ON PHOTOTAXIS OF CHUM AND COHO SALMON JUVENILES
        M IWATA; T YAMANOME; M TAGAWA; H IDA; T HIRANO
        AQUACULTURE, Nov. 1989, Peer-reviewed
      • CHANGES IN PLASMA PROLACTIN AND GROWTH-HORMONE CONCENTRATIONS DURING FRESH-WATER ADAPTATION OF JUVENILE CHUM SALMON (ONCORHYNCHUS-KETA) REARED IN SEAWATER FOR A PROLONGED PERIOD
        T OGASAWARA; T HIRANO; T AKIYAMA; S ARAI; M TAGAWA
        FISH PHYSIOLOGY AND BIOCHEMISTRY, Jun. 1989, Peer-reviewed
      • EFFECTS OF BOVINE TSH ON THE TISSUE THYROXINE LEVEL AND METAMORPHOSIS IN PROMETAMORPHIC FLOUNDER LARVAE
        Y INUI; M TAGAWA; S MIWA; T HIRANO
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Jun. 1989, Peer-reviewed
      • CHANGES IN TISSUE THYROXINE LEVEL OF METAMORPHOSING JAPANESE FLOUNDER PARALICHTHYS-OLIVACEUS REARED AT DIFFERENT TEMPERATURES
        JB TANANGONAN; M TAGAWA; M TANAKA; T HIRANO
        NIPPON SUISAN GAKKAISHI, Mar. 1989, Peer-reviewed
      • THYROXINE SURGE IN METAMORPHOSING FLOUNDER LARVAE
        S MIWA; M TAGAWA; Y INUI; T HIRANO
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Apr. 1988, Peer-reviewed
      • PRESENCE OF THYROXINE IN EGGS AND CHANGES IN ITS CONTENT DURING EARLY DEVELOPMENT OF CHUM SALMON, ONCORHYNCHUS-KETA
        M TAGAWA; T HIRANO
        GENERAL AND COMPARATIVE ENDOCRINOLOGY, Oct. 1987, Peer-reviewed

      Misc.

      • 魚類の変態と初期生残 (総特集 海洋生命系のダイナミクス) -- (4章 変動系のダイナミクス--海洋生命系の変動は人類に何をもたらすか?)
        田川 正朋; 中山 耕至; 田中 克
        号外海洋, 2002
      • マツカワ仔稚魚期の飼育密度が性比と体色異常に与える影響
        佐藤航大; 松田泰平; 田川正朋
        令和3年度日本水産学会春季大会 535番, Mar. 2021
      • 大型シロギスの効率的な養殖にむけて(10)~耳石標識から調べた種苗生産における共食いの影響~
        鶴巻佑介; 藤川稔晃; 有瀧真人; 田川正朋
        令和3年度日本水産学会春季大会 534番, Mar. 2021
      • 大型シロギスの効率的な養殖に向けて(9)~コルチゾルは短躯症の原因となりうる~
        鶴巻佑介; 藤川稔晃; 有瀧真人; 宇治督; 風藤行紀; 田川正朋
        令和2年度日本水産学会春季大会要旨集, Mar. 2020
      • 網敷き飼育によるヒラメの着色型黒化の防除-効果的・効率的な網敷き方法の検討-
        小野山剛; 山田敏之; 田川正朋
        令和2年度日本水産学会春季大会要旨集, Mar. 2020
      • 大型シロギスの効率的な養殖に向けて(6)~ストレスによるコルチゾルが短躯症を誘起する可能性~
        鶴巻佑介; 藤川稔晃; 南卓志; 有瀧真人; 宇治督; 風藤行紀; 田川正朋
        令和元年度日本水産学会秋季大会要旨集, Sep. 2019, Last author
      • ヒラメの着色型黒化の進行に伴う脳と皮膚のtranscriptomeの変化
        齋藤雄大; 篠原怜; 松田直往; 田川正朋; 横井勇人; 鈴木徹
        平成31年度日本水産学会春季大会要旨集9035番, Mar. 2019
      • 大型シロギスの効率的な養殖にむけて(2)~仔稚魚の骨格異常におけるストレス関与の可能性~
        鶴巻佑介; 藤川稔晃; 南卓志; 有瀧真人; 田川正朋
        平成30年度日本水産学会秋季大会要旨集318番, Sep. 2018
      • ヒラメの着色型黒化部に現れる黒色素胞の起源について
        十川麻衣; 松田直往; 田川正朋; 横井勇人; 鈴木 徹
        平成30年度日本水産学会春季大会要旨集225番, Mar. 2018
      • 網敷き飼育によるヒラメ着色型黒化の防除
        水谷昂栄; 山田敏之; 益田玲爾; 中田訓彰; 田川正朋
        平成30年度日本水産学会春季大会要旨集1429番, Mar. 2018
      • ヒラメ着色型黒化におけるMCR、ASIPおよびMCHRの関与の可能性
        松田直往; 笠木聡; 中丸徹; 益田玲爾; 高橋明義; 田川正朋
        平成29年度日本水産学会春季大会要旨集1310番, Mar. 2017
      • シロギスの天然魚と飼育環境下におけるコルチゾル濃度の変化
        山田雄太; 有瀧真人; 田川正朋; 征矢野清
        平成28年度水産学会九州支部大会要旨集1-10番, Dec. 2016
      • マツカワにおいて高密度飼育がコルチゾル産生能と体色異常に与える影響
        内藤咲希子; 松田泰平; 宇治督; 風藤行紀; 田川正朋
        第41回日本比較内分泌学会大会要旨集P-2, Dec. 2016
      • 飼育水槽底面の凹凸および色がヒラメ着色型黒化に及ぼす影響
        中田訓彰; 深山義文; 益田玲爾; 田川正朋
        平成28年度日本水産学会春季大会要旨集562番, Mar. 2016
      • 鱗の自家移植によるヒラメ無眼側黒化の拡大機構−黒化鱗は周辺を黒化させる−
        渡邉裕太; 深山義文; 田川正朋
        平成28年度日本水産学会春季大会要旨集1182番, Mar. 2016
      • ストレス−コルチゾル系がヒラメ着色型黒化に及ぼす影響
        松田直往; 深山義文; 益田玲爾; 田川正朋
        平成28年度日本水産学会春季大会要旨集225番, Mar. 2016
      • Morphological abnormality of hatchery-reared juveniles: Achievements in the past and challenges for the future
        Masato Aritaki; Masatomo Tagawa; Kiyoshi Soyano
        Nippon Suisan Gakkaishi (Japanese Edition), 01 Jan. 2016
      • ヒラメ・カレイ類の変態後に起こる無眼側着色型黒化の発生過程と色素胞前駆細胞の分布
        鈴木徹; 烏暁明; 國政実里; 横井勇人; 宇治督; 礒島俊実; 田川正朋
        平成27年度日本水産学会春季大会, Mar. 2015
      • 砂敷によるヒラメ着色型黒化防除の機構―コルチゾルによる促進と凹凸面による抑制―
        山本一毅; 深山義文; 益田玲爾; 田川正朋
        平成27年度日本水産学会春季大会, Mar. 2015
      • 飼育下アカガレイの多様な形態異常防除に向けた試みー出現機構の成長とストレスに基づく理解ー
        浅田憲貴; 松田泰平; 田川正朋
        平成27年度日本水産学会春季大会, Mar. 2015
      • 飼育下アカガレイの多様な形態異常防除に向けた試みー飼育密度の検討ー.
        浅田憲貴; 松田泰平; 田川正朋
        平成26年度日本水産学会春季大会, Mar. 2014
      • 飼育下アカガレイの多様な形態異常防除に向けた試みー成長履歴の検討ー.
        浅田憲貴; 松田泰平; 田川正朋
        平成26年度日本水産学会春季大会, Mar. 2014
      • タラバガニ幼生期にみられた早期沈降と形態異常の関連.
        大杉樹里; 田村亮一; 田川正朋
        平成26年度日本水産学会春季大会, Mar. 2014
      • 飼育下アカガレイの多様な形態異常防除に向けた試みー飼育水温の検討ー.
        浅田憲貴; 松田泰平; 田川正朋
        平成25年度日本水産学会秋季大会, Sep. 2013
      • ヒラメ無眼側黒化の程度におよぼす黒化開始時期および黒化中断の影響
        礒島,俊実; 深山,義文; 牧野,直; 田川,正朋
        平成25年度日本水産学会春期大会, 2013
      • 飼育下のアカガレイに見られる多様な形態異常は眼と体色の組み合わせの異常によって生じる.
        浅田憲貴; 松田泰平; 田川正朋
        平成25年度日本水産学会春期大会, 要旨集1213番 P.183., 2013
      • 底砂の有無がヒラメの無眼側傷修復部の黒化に与える影響
        越後,はるな; 藤浪,祐一郎; 田川,正朋
        平成24年度日本水産学会秋期大会, 2012
      • ヒラメ無眼側における着色型黒化進行過程の個体識別による検討
        礒島,俊実; 高草木,将人; 牧野,直; 田川,正朋
        平成24年度日本水産学会秋期大会, 2012
      • ヒラメの無眼側着色型黒化における黒化部の分類と組織レベルでの黒化過程の検討
        礒島,俊実; 辻,寛人; 高草木,将人; 牧野,直; 田川,正朋
        平成24年度日本水産学会春季大会, 2012
      • マツカワにおけるメラニン凝集ホルモン(MCH)反応性は変態後期に左右差を生じる.
        吉川尚樹; 松田泰平; 高橋明義; 田川正朋
        第37回 日本比較内分泌学会大会, 要旨集P-82番 P.58., 2012
      • マツカワ無眼側の黒化部は有眼側の特徴を示すー変態期と変態完了後に発現する黒化の比較ー.
        吉川尚樹; 松田泰平; 村上直人; 市川卓; 田川正朋
        平成24年度日本水産学会春期大会, 要旨集304番 P.28., 2012, Peer-reviewed
      • ヒラメ稚魚の無眼側に発現する二次黒化−発現過程の解析と黒化部位の特徴−
        辻 寛人; 田川 正朋
        平成23年度日本水産学会春季大会, Mar. 2011
      • 祖先的なカレイ目魚類ボウズガレイの親魚適性の検討
        吉川 尚樹; Thamootharan Mammaran; Elvin M Bavoh; 田中 克; 田川 正朋
        平成23年度日本水産学会春季大会, Mar. 2011
      • 黒い仔魚の体色が変態期に薄れるマツカワの色素胞発現-白い仔魚が着色するヒラメとの比較-.
        吉川尚樹; 松田泰平; 田川正朋
        平成23年度日本水産学会秋期大会, 要旨集404番 P.51., 2011
      • ヒラメの無眼側体表は傷修復によって有眼側的特徴を獲得する.
        越後はるな; 藤浪祐一郎; 田川正朋
        平成23年度日本水産学会秋期大会, 要旨集403番 P.51., 2011
      • ヒラメの変態におけるアポトーシス関与の可能性
        田中 健太郎; 鈴木 徹; 清水 大輔; 有瀧 真人; 田川 正朋
        平成22年度日本水産学会春季大会, Mar. 2010
      • ホシガレイにおける両面有色個体の出現機構 ―甲状腺ホルモン投与時の体長との関連―
        西川 泰造; 清水 大輔; 有瀧 真人; 田川 正朋
        平成22年度日本水産学会春季大会, Mar. 2010
      • 濁りが渓流魚の血中酸素濃度に及ぼす影響
        木下篤彦; 田川正朋; 藤田正治; 水山高久
        砂防学会研究発表会概要集, 24 May 2005
      • The thyroid hormone monodeiodinase system during flounder metamorphosis
        M Tagawa; EG deJesus; T Hirano
        AQUACULTURE, Oct. 1995
      • CHANGES IN THYROID-HORMONE CONCENTRATIONS IN DEVELOPING CHUM SALMON
        M TAGAWA; T HIRANO
        ZOOLOGICAL SCIENCE, Dec. 1987
      • EXTRACTION OF THYROID-HORMONE FROM EGGS, WHOLE EMBRYOS AND ALEVINS OF CHUM SALMON
        M TAGAWA; T HIRANO; M IWATA
        ZOOLOGICAL SCIENCE, Dec. 1986
      • EFFECTS OF GLYCOPROTEIN FRACTIONS OF SALMON PITUITARIES ON THYROXINE SECRETION IN JUVENILE RAINBOW-TROUT
        M TAGAWA; T HIRANO; H KAWAUCHI
        ZOOLOGICAL SCIENCE, 1985

      Presentations

      • ヒラメ・カレイ類の形態異常-飼育環境への適応不全と内分泌系
        田川 正朋
        長崎大学OMSTシンポジウム「海と地球と人と」特別シンポジウム「海洋動物の環境適応」講演要旨集 招待講演5.P11., 24 Nov. 2018, Invited
      • 魚類の変態からみた甲状腺系の系統進化的な役割
        田川 正朋
        第44回日本神経内分泌学会学術集会.シンポジウム3:比較内分泌の視点から神経内分泌を考える, 22 Oct. 2017, Invited
      • 小さな脊椎動物?―仔魚の生理生態と変態―
        田川 正朋
        第88回日本動物学会 シンポジウム20小さな動物たちの多様な生き様, 22 Sep. 2017, Invited
      • 眼位異常におけるホルモン系関与の可能性
        田川 正朋
        平成28年度日本水産学会春季大会シンポジウム「魚類人工種苗の形態異常:これまでとこれから」, Mar. 2016, Invited
      • 変態誘起作用をもつ甲状腺ホルモンの幼型成熟魚類における特性
        田川 正朋; 原田 靖子; 北野 忠; 秋山 信彦
        東京大学海洋研究所共同利用シンポジウム水生生物の異時性に関する研究 現状の把握と今後の展望, Nov. 2010, Invited
      • 変態期の左右性決定への甲状腺ホルモンの関与
        田川正朋
        平成17年度日本水産学会大会ミニシンポジウム「ヒラメ・カレイの裏表−異体類の左右性発現の機序とその異常について−」, 2005, Invited
      • カレイ類変態の成功・不成功に関与する要因
        田川 正朋
        平成16年度新プロ公開シンポジウム講演要旨集, p.36, 2004, Invited
      • カレイ類の変態に関与する2つの時間軸
        田川 正朋
        平成15年度新プロ公開シンポジウム, 2003, Invited
      • 魚類の変態と初期生残
        田川 正朋
        平成13年度新プロ公開シンポジウム講演要旨集, p.88-90, 2001, Invited
      • 魚類変態の生理生態
        田川正朋; 田中克
        第2回変態機構の生物学談話会, 1998, Invited
      • 内分泌機能の発現とその役割
        田川 正朋
        平成2年度日本水産学会秋季大会シンポジウム「魚類の初期発育過程」, Nov. 1990, Invited
      • 海洋生物学へようこそ、魚の赤ちゃんからの招待状
        田川正朋
        第45回日本比較内分泌学会大会記念公開フォーラム「高大連携で進化する海の探求」, 14 Nov. 2021, Invited

      Books and Other Publications

      • 光が彩るヒラメ・カレイ類養殖
        田川正朋, Contributor, 第7章 ヒラメ・カレイ類の体色異常と防除
        恒星社厚生閣, Sep. 2022
      • 「魚類学の百科事典」(日本魚類学会編)
        田川正朋, Contributor, 7章10節 変態の生理
        丸善, Oct. 2018, Not refereed
      • 魚の形は飼育環境で変わる−形態異常はなぜ起こるのか?
        有瀧真人; 田川正朋; 征矢野清, Joint editor, 1章 魚類の形態異常の概略;12章 異体類の体色・眼位異常におけるホルモン系関与の可能性
        恒星社厚生閣, Jun. 2017, Not refereed
      • ホルモンから見た生命現象と進化シリーズ2巻 発生・変態・リズム
        天野勝文; 田川正朋, Joint editor, 5章 魚の変態とホルモン
        裳華房, Aug. 2016, Not refereed
      • 増補改訂版 魚類生理学の基礎
        三輪理; 田川正朋, Contributor, 8章 変態 (pp. 184-192)
        恒星社厚生閣, 2013, Not refereed
      • 知られざる動物の世界3 エイ・ギンザメ・ウナギのなかま
        中坊徹次; 甲斐義晃; 鄭 忠勲; 田川正朋; 土井内, Joint translation
        朝倉書店, 2011, Not refereed
      • 魚類生態学の基礎
        田川正朋; 田中克, Contributor, 14章 変態と着底 (pp. 161-171)
        恒星社厚生閣, 2010, Not refereed
      • 稚魚 生残と変態の生理生態学
        田中克; 田川正朋; 中山耕至, Joint work
        京都大学学術出版会, 2009, Not refereed
      • 稚魚学ー多様な生理生態を探る
        田中克; 田川正朋; 中山耕至, Joint editor
        生物研究社, 2008, Not refereed
      • ホルモンハンドブック新訂e-Book版
        田川正朋, Contributor, ?-A. 甲状腺ホルモン (pp. 1908-1929)
        南江堂, 2007, Not refereed
      • 海洋生命系ダイナミクスシリーズ4巻 海の生物資源
        田川正朋, Contributor, 1部6章 異体類の変態 (pp.102-119)
        東海大学出版, 2005, Not refereed
      • 森と里と海のつながりー京大フィールド研の挑戦―
        田中克; 田川正朋; 中山耕至, Contributor, 有明海筑後川河口域での魚類研究 (pp.64-68)
        京都大学総合博物館, 2004, Not refereed
      • 水産学シリーズ83巻 魚類の初期発育
        田川正朋; 木村量, Contributor, ?-4.内分泌機能の発現とその役割(pp47-59)
        恒星社厚生閣, 1991, Not refereed

      Awards

      • 1997
        The Japanese Society of Fisheries Science, Achievement Award for Young Scientists in Fisheries Science
      • 2011
        The Japanese Society of Fisheries Science, Aword of Excellence for Scientific Paper in Fisheries Science
      • 28 Mar. 2013
        The Japanese Society of Fisheries Science, Aword of Excellence for Scientific Paper in Fisheries Science
      • 06 Feb. 2021
        The Japanese Society of Fisheries Science, Aword of Excellence for Scientific Paper in Fisheries Science

      External funds: Kakenhi

      • Blind side hypermelanosis and stress in heterosomata, by net-lined rearing and optmization of eggs
        Grant-in-Aid for Scientific Research (C)
        Basic Section 40040:Aquatic life science-related
        Kyoto University
        Masatomo Tagawa
        From 01 Apr. 2019, To 31 Mar. 2024, Project Closed
        ヒラメ;カレイ類;無眼側黒化;網敷飼育;ストレス;コルチゾル;短躯症;性比の偏り;マツカワ;砂敷飼育;血管黒化;白化個体;成長速度依存性;ワキン;黒化;原因遺伝子;浮遊期飼育密度;黒ソブ;ヒラメ・カレイ類;ストレス-コルチゾル系;網敷き飼育;共食い;キンギョ;性比のかたより;ストレスーコルチゾル系;顎骨異常;性比の正常化
      • 変態発生制御のシグナル回路と形態異常感受性に関する研究
        Grant-in-Aid for Scientific Research (B)
        Tohoku University
        鈴木 徹
        From 01 Apr. 2017, To 31 Mar. 2021, Declined
        水産増養殖;異体類;変態;発生;体色異常;骨異常;左右非対称性形成;水産学;発生・分化;発現制御;トランスクリプトーム解析
      • Involvement of stress-cortisol axis in blind-side hypermelanosis of flatfishes
        Grant-in-Aid for Scientific Research (C)
        Kyoto University
        Masatomo TAGAWA
        From 01 Apr. 2015, To 31 Mar. 2020, Project Closed
        ヒラメ・カレイ類;ストレス;コルチゾル;無眼側黒化;着色型黒化;網敷き飼育;形態異常;ヒラメ;MSH受容体;体型正常化;鱗自家移植;凹凸面;飼育密度;カレイ類;間腎腺組織像
      • Understanding of malformation and mal-pigmentation of Heterosomata, and development of prevention method for staining-type hyper-melanosis
        Grant-in-Aid for Scientific Research (C)
        Kyoto University
        Masatomo TAGAWA
        From 01 Apr. 2012, To 31 Mar. 2016, Project Closed
        形態異常;カレイ類;二次黒化;ホルモン;ストレス;成長速度;有眼側化因子;着色型黒化;コルチゾル;種苗生産;有眼側化;マツカワ;ヒラメ;黒色素胞;櫛鱗;メラニン凝集ホルモン
      • Origin of right-left sideness could be revealed in the metamorphic process of the most primitive flatfish Indian halibut Psettodes erumei distributed in Asian tropical waters
        Grant-in-Aid for Scientific Research (C)
        Kyoto University
        Masaru TANAKA
        From 01 Apr. 2009, To 31 Mar. 2012, Project Closed
        ボウズガレイ;異体類;変態;左右性;成熟;親魚養成;人工授精;稚魚成育場;コタキナバル;生殖腺;組織学的観察;卵成熟;精子形成;卵巣成熟;成熟親魚;着底稚魚;市場調査;遺伝子機構;内分泌機構;成熟産卵
      • Mechanisms and prevention of malformation in Pleuronectiformes-determination of optimal growth rate before metamorphosis-
        Grant-in-Aid for Scientific Research (C)
        Kyoto University
        Masatomo TAGAWA
        From 01 Apr. 2008, To 31 Mar. 2011, Project Closed
        カレイ類;形態異常;甲状腺ホルモン;タイミング説;耳石標識;成長履歴;両面有色;白化;種苗生産
      • 尾虫類大量培養法の開発とヒラメ仔魚の成長、発育に対する尾虫類摂餌の効果
        Grant-in-Aid for Exploratory Research
        Kyoto University
        山下 洋
        From 01 Apr. 2006, To 31 Mar. 2009, Project Closed
        海洋資源;海洋生物;水産学;ヒラメ;大量培養;種苗生産;仔稚魚;アミノ酸;尾虫類;脂肪酸;ワカレオタマボヤ;チロキシン;変態
      • Mechanisms of asymmetrical body formation during flatfish metamorphosis and prevention of malformed juveniles in seed production process
        Grant-in-Aid for Scientific Research (C)
        Kyoto University
        Masatomo TAGAWA
        From 01 Apr. 2005, To 31 Mar. 2008, Project Closed
        異体類;変態異常;ババガレイ;ヒラメ;ヌマガレイ;甲状腺ホルモン;タイミング説;左右非対称性;変熊異常;ホシガレイ;成長履歴解析;ALC多数回標識;マヌガレイ;成長履歴;ヒラメ・カレイ類;内分泌系の関与;変態;体色発現, flatfish;metamorphic abnormality;slime flounder;Japanese flounder;starry flounder;thyroid hormone;timing hypothesis;left-right asymmetry
      • A Comprehensive Study on "Rich Culture of Specialized knowledge" - Human and Natural-Scientific Integrated Approach to its Functions, Education and Practical Training -
        Grant-in-Aid for Scientific Research (B)
        The Open University of Japan;Kyoto University
        Katunori FUJIWARA
        From 01 Apr. 2005, To 31 Mar. 2009, Project Closed
        専門的教養知;国際協力;文理融合;心理臨床;人間知;時空知;生命知;専門家連携;筋ジストロフィー;発達支援;実践フィールド
      • Mechanisms of eye relocation during flatfish metamorphosis, - asymmetrical morphogenesis by thyroid hormone
        Grant-in-Aid for Scientific Research (C)
        Kyoto University
        Masatomo TAGAWA
        From 01 Apr. 2002, To 31 Mar. 2005, Project Closed
        変態;左右非対称性;体色;眼の移動;ヒラメ・カレイ類;甲状腺ホルモン;初期発達のタイミング;形態異常;甲状腺ホルモン感受性;タイミング;pseudomesial bar;ヒラメ;カレイ類;部域差;ホシガレイ;retrorbital vesicle, metamorphosis;left-right asymmetry;body color;eye relocation;flatfish;thyroid hormone;timing in early development;malformation
      • Amphidromy related to genetic structure of a hybrid temperate bass population in Ariake Sea
        Grant-in-Aid for Scientific Research (B)
        KYOTO UNIVERSITY
        Masaru TANAKA
        From 01 Apr. 2001, To 31 Mar. 2003, Project Closed
        有明海スズキ;交雑個体群;両側回遊性;筑後川河口域;ミトコンドリアDNA;耳石微量元素;耳石日周輪;Sinocalanus sinensis, Ariake temperate bass;hybrid population;amphidromy;Chikugo river estuary;mitocondrial DNA;otolith microchemistry;otolith daily ring;Shinocalanus sinensis
      • ヒラメ変態時の左右非対称性発現に関する内分泌学的研究
        Grant-in-Aid for Encouragement of Young Scientists (A)
        Kyoto University
        田川 正朋
        From 01 Apr. 1999, To 31 Mar. 2001, Project Closed
        ヒラメ;変態;左右非対称性;甲状腺ホルモン;眼の移動;異体類;ACTH;MSH;コルチゾル;retrorbital vesicle;pseudomesial bar
      • 広塩性魚テラピアの胚仔魚期の海水適応における浸透圧調節ホルモン受容体の発現動態
        Grant-in-Aid for Encouragement of Young Scientists (A)
        Kyoto University
        田川 正朋
        From 01 Apr. 1996, To 31 Mar. 1997, Project Closed
        コルチゾル受容体;mRNA;テラピア;浸透圧調節;発生初期;母体由来ホルモン
      • 魚類発生過程における浸透圧調節ホルモン受容体の発現調節機構
        Grant-in-Aid for Encouragement of Young Scientists (A)
        The University of Tokyo
        田川 正朋
        From 01 Apr. 1995, To 31 Mar. 1996, Project Closed
        コルチゾル受容体;mRNA;ティラピア;浸透圧調節;魚類;エラ
      • 魚類卵細胞への甲状腺ホルモン及びペプチドホルモンの取り込み機構
        Grant-in-Aid for Encouragement of Young Scientists (A)
        The University of Tokyo
        田川 正朋
        From 01 Apr. 1994, To 31 Mar. 1995, Project Closed
        卵のホルモン;魚類発生;テラピア;インスリン;ホルモン輸送
      • OSMOREGULATORY MECHANISMS DURING EARLY LIFE STAGES IN FISH AND THEIR HORMONAL CONTROL
        Grant-in-Aid for General Scientific Research (A)
        UNIVERSITY OF TOKYO
        Tetsuya HIRANO
        From 01 Apr. 1994, To 31 Mar. 1996, Project Closed
        広塩性魚類;仔稚魚;初期発生;浸透圧調節;内分泌系;成長ホルモン;プロラクチン;塩類細胞, Euryhaline fish;Embryos and larvae;Early development;Osmoregulation;Hormones;Cortisol;Prolactin;Chloride cells
      list
        Last Updated :2025/06/02

        Education

        Teaching subject(s)

        • From 01 Apr. 2025, To 31 Mar. 2026
          Laboratory Course in Marine Bioresource Science II
          5367, Fall, Faculty of Agriculture, 6
        • From 01 Apr. 2025, To 31 Mar. 2026
          Laboratory Course in Marine Bioresource Science I
          5365, Spring, Faculty of Agriculture, 6
        • From 01 Apr. 2025, To 31 Mar. 2026
          Laboratory Course in Marine Biology
          DG07, Spring, Graduate School of Agriculture, 3
        • From 01 Apr. 2025, To 31 Mar. 2026
          Laboratory Course in Marine Biology
          DG07, Fall, Graduate School of Agriculture, 3
        • From 01 Apr. 2025, To 31 Mar. 2026
          Marine Biological Science
          5321, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2025, To 31 Mar. 2026
          Seminar in Marine Bioresources Science
          5297, Year-long, Faculty of Agriculture, 2
        • From 01 Apr. 2025, To 31 Mar. 2026
          Practical Course in Marine Bioscience and Technology I
          5257, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2025, To 31 Mar. 2026
          Basic Marine Resource Biology
          5709, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2025, To 31 Mar. 2026
          Physiology of Marine Organisms
          5213, Fall, Faculty of Agriculture, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Seminar in Marine Biology
          DF07, Fall, Graduate School of Agriculture, 1.5
        • From 01 Apr. 2024, To 31 Mar. 2025
          Seminar in Marine Biology
          DF07, Spring, Graduate School of Agriculture, 1.5
        • From 01 Apr. 2024, To 31 Mar. 2025
          Laboratory Course in Marine Bioresource Science I
          5365, Spring, Faculty of Agriculture, 6
        • From 01 Apr. 2024, To 31 Mar. 2025
          Laboratory Course in Marine Bioresource Science II
          5367, Fall, Faculty of Agriculture, 6
        • From 01 Apr. 2024, To 31 Mar. 2025
          Laboratory Course in Marine Biology
          DG07, Spring, Graduate School of Agriculture, 3
        • From 01 Apr. 2024, To 31 Mar. 2025
          Laboratory Course in Marine Biology
          DG07, Fall, Graduate School of Agriculture, 3
        • From 01 Apr. 2024, To 31 Mar. 2025
          Biology of Marine Resources
          DA13, Spring, Graduate School of Agriculture, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Basic Marine Resource Biology
          5709, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Practical Course in Marine Bioscience and Technology I
          5257, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Physiology of Marine Organisms
          5213, Fall, Faculty of Agriculture, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Introduction to Foreign Literature in Marine Bioresource Science
          5355, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Marine Biological Science
          5321, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Seminar in Marine Bioresources Science
          5297, Year-long, Faculty of Agriculture, 2
        • From 01 Apr. 2023, To 31 Mar. 2024
          Seminar in Marine Biology2
          DB41, Year-long, Graduate School of Agriculture, 3
        • From 01 Apr. 2023, To 31 Mar. 2024
          Seminar in Marine Biology1
          DB40, Year-long, Graduate School of Agriculture, 3
        • From 01 Apr. 2023, To 31 Mar. 2024
          Laboratory Course in Marine Biology2
          DC41, Year-long, Graduate School of Agriculture, 6
        • From 01 Apr. 2023, To 31 Mar. 2024
          Laboratory Course in Marine Biology1
          DC40, Year-long, Graduate School of Agriculture, 6
        • From 01 Apr. 2023, To 31 Mar. 2024
          Seminar in Marine Bioresources Science
          5297, Year-long, Faculty of Agriculture, 2
        • From 01 Apr. 2023, To 31 Mar. 2024
          Practical Course in Marine Bioscience and Technology I
          5257, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2023, To 31 Mar. 2024
          Physiology of Marine Organisms
          5213, Fall, Faculty of Agriculture, 2
        • From 01 Apr. 2023, To 31 Mar. 2024
          Basic Marine Resource Biology
          5709, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2023, To 31 Mar. 2024
          Marine Biological Science
          5321, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Biology of Marine Resources
          DA13, Spring, Graduate School of Agriculture, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Introduction to Foreign Literature in Bioresource Science I
          5187, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Laboratory Course in Marine Biology1
          DC40, Year-long, Graduate School of Agriculture, 6
        • From 01 Apr. 2022, To 31 Mar. 2023
          Seminar in Marine Bioresources Science
          5297, Year-long, Faculty of Agriculture, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Seminar in Marine Biology1
          DB40, Year-long, Graduate School of Agriculture, 3
        • From 01 Apr. 2022, To 31 Mar. 2023
          Physiology of Marine Organisms
          5213, Fall, Faculty of Agriculture, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Seminar in Marine Biology2
          DB41, Year-long, Graduate School of Agriculture, 3
        • From 01 Apr. 2022, To 31 Mar. 2023
          Basic Marine Resource Biology
          5709, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Laboratory Course in Marine Biology2
          DC41, Year-long, Graduate School of Agriculture, 6
        • From 01 Apr. 2022, To 31 Mar. 2023
          Ecology of Marine Organisms
          5165, Spring, Faculty of Agriculture, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Practical Course in Marine Bioscience and Technology I
          5257, Spring, Faculty of Agriculture, 2
        • From Apr. 2011, To Mar. 2012
          Ecology of marine organisms
          Spring, 農学部
        • From Apr. 2011, To Mar. 2012
          Physiology of marine organisms
          Fall, 農学部
        • From Apr. 2011, To Mar. 2012
          海洋生物資源学演習
          Year-long, 農学部
        • Animal Physiology
        • From Apr. 2011, To Mar. 2012
          海洋資源生物学専攻実験
          農学研究科
        • From Apr. 2011, To Mar. 2012
          海洋資源生物学演習
          農学研究科
        • From Apr. 2011, To Mar. 2012
          海洋資源生物学特論
          農学研究科
        • From Apr. 2011, To Mar. 2012
          Comparative Physiology
          Spring, 全学共通科目
        • From Apr. 2011, To Mar. 2012
          Exercises in Ecological Interactions between Forests and Coastal Areas B
          Spring, 全学共通科目
        • From Apr. 2011, To Mar. 2012
          Introduction to the Aquatic Biology
          Spring, 全学共通科目
        • From Apr. 2011, To Mar. 2012
          海洋生物科学技術論と実習I
          Spring, 農学部
        • From Apr. 2011, To Mar. 2012
          資源生物科学概論III
          Fall, 農学部
        • 資源生物科学専門外書講義II
          Spring, 農学部
        • 資源生物科学専門外書講義II
          Fall, 農学部
        • 資源生物科学実験および実験法I
          Spring, 農学部
        • 資源生物科学実験および実験法I
          Fall, 農学部
        • 資源生物科学実験および実験法II
          Spring, 農学部
        • 資源生物科学実験および実験法II
          Fall, 農学部
        • From Apr. 2011, To Mar. 2012
          資源生物科学基礎実験
          Fall, 農学部
        • From Apr. 2012, To Mar. 2013
          Physiology
          Spring, 農学部
        • From Apr. 2012, To Mar. 2013
          Introduction to regional sciences
          Spring, 全学共通科目
        • From Apr. 2012, To Mar. 2013
          Comparative Physiology
          Spring, 全学共通科目
        • From Apr. 2012, To Mar. 2013
          Introduction to the Aquatic Biology
          Fall, 全学共通科目
        • From Apr. 2012, To Mar. 2013
          Ecology of Marine Organisms
          Spring, 農学部
        • From Apr. 2012, To Mar. 2013
          Physiology of Marine Organisms
          Fall, 農学部
        • From Apr. 2012, To Mar. 2013
          Practical Course in Marine Bioscience and Technology I
          Spring, 農学部
        • From Apr. 2012, To Mar. 2013
          Seminar in Marine Bioresources Science
          Year-long, 農学部
        • From Apr. 2012, To Mar. 2013
          Introduction to Foreign Literature in Bioresource Science II
          Spring, 農学部
        • From Apr. 2012, To Mar. 2013
          Introduction to Fish Biology for Fish Lovers
          Spring, 全学共通科目
        • From Apr. 2013, To Mar. 2014
          Ecology of Marine Organisms
          Spring, 農学部
        • From Apr. 2013, To Mar. 2014
          Introduction to Foreign Literature in Bioresource Science II
          Spring, 農学部
        • From Apr. 2013, To Mar. 2014
          Physiology of Marine Organisms
          Fall, 農学部
        • From Apr. 2013, To Mar. 2014
          Practical Course in Marine Bioscience and Technology I
          Spring, 農学部
        • From Apr. 2013, To Mar. 2014
          Seminar in Marine Bioresources Science
          Year-long, 農学部
        • From Apr. 2013, To Mar. 2014
          Biology of Marine Resources
          Fall, 農学研究科
        • From Apr. 2013, To Mar. 2014
          Seminar in Marine Biology
          Year-long, 農学研究科
        • From Apr. 2013, To Mar. 2014
          Laboratory Course in Marine Biology
          Year-long, 農学研究科
        • From Apr. 2013, To Mar. 2014
          Comparative Physiology
          Spring, 全学共通科目
        • From Apr. 2013, To Mar. 2014
          Introduction to the Aquatic Biology
          Fall, 全学共通科目
        • From Apr. 2013, To Mar. 2014
          Introduction to regional sciences
          Spring, 全学共通科目
        • From Apr. 2014, To Mar. 2015
          Ecology of Marine Organisms
          Spring, 農学部
        • From Apr. 2014, To Mar. 2015
          Physiology of Marine Organisms
          Fall, 農学部
        • From Apr. 2014, To Mar. 2015
          Practical Course in Marine Bioscience and Technology I
          Spring, 農学部
        • From Apr. 2014, To Mar. 2015
          Seminar in Marine Bioresources Science
          Year-long, 農学部
        • From Apr. 2014, To Mar. 2015
          Seminar in Marine Biology
          Year-long, 農学研究科
        • From Apr. 2014, To Mar. 2015
          Laboratory Course in Marine Biology
          Year-long, 農学研究科
        • From Apr. 2014, To Mar. 2015
          Comparative Physiology
          Spring, 全学共通科目
        • From Apr. 2014, To Mar. 2015
          Introduction to the Aquatic Biology
          Fall, 全学共通科目
        • From Apr. 2014, To Mar. 2015
          Introduction to regional sciences
          Spring, 全学共通科目
        • From Apr. 2015, To Mar. 2016
          Physiology
          Spring, 農学部
        • From Apr. 2015, To Mar. 2016
          Introduction to regional sciences
          Spring, 全学共通科目
        • From Apr. 2015, To Mar. 2016
          Introduction to the Aquatic Biology
          Fall, 全学共通科目
        • From Apr. 2015, To Mar. 2016
          Ecology of Marine Organisms
          Spring, 農学部
        • From Apr. 2015, To Mar. 2016
          Physiology of Marine Organisms
          Fall, 農学部
        • From Apr. 2015, To Mar. 2016
          Practical Course in Marine Bioscience and Technology I
          Spring, 農学部
        • From Apr. 2015, To Mar. 2016
          Seminar in Marine Bioresources Science
          Year-long, 農学部
        • From Apr. 2015, To Mar. 2016
          Laboratory Course in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2015, To Mar. 2016
          Laboratory Course in Marine Biology
          Year-long, 農学研究科
        • From Apr. 2015, To Mar. 2016
          Seminar in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2015, To Mar. 2016
          Seminar in Marine Biology
          Year-long, 農学研究科
        • From Apr. 2015, To Mar. 2016
          Biology of Marine Resources
          Fall, 農学研究科
        • From Apr. 2016, To Mar. 2017
          ILAS Seminar
          Spring, 全学共通科目
        • From Apr. 2016, To Mar. 2017
          Physiology
          Spring, 農学部
        • From Apr. 2016, To Mar. 2017
          Ecology of Marine Organisms
          Spring, 農学部
        • From Apr. 2016, To Mar. 2017
          Physiology of Marine Organisms
          Fall, 農学部
        • From Apr. 2016, To Mar. 2017
          Practical Course in Marine Bioscience and Technology I
          Spring, 農学部
        • From Apr. 2016, To Mar. 2017
          Seminar in Marine Bioresources Science
          Year-long, 農学部
        • From Apr. 2016, To Mar. 2017
          Laboratory Course in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2016, To Mar. 2017
          Laboratory Course in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2016, To Mar. 2017
          Laboratory Course in Marine Biology
          Year-long, 農学研究科
        • From Apr. 2016, To Mar. 2017
          Seminar in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2016, To Mar. 2017
          Seminar in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2016, To Mar. 2017
          Seminar in Marine Biology
          Year-long, 農学研究科
        • From Apr. 2016, To Mar. 2017
          Introduction to Foreign Literature in Bioresource Science I
          Spring, 農学部
        • From Apr. 2016, To Mar. 2017
          Outline of Agricultural Science II
          Fall, 農学部
        • From Apr. 2017, To Mar. 2018
          Physiology
          Spring, 農学部
        • From Apr. 2017, To Mar. 2018
          Ecology of Marine Organisms
          Spring, 農学部
        • From Apr. 2017, To Mar. 2018
          Physiology of Marine Organisms
          Fall, 農学部
        • From Apr. 2017, To Mar. 2018
          Marine Biological Science
          Fall, 農学部
        • From Apr. 2017, To Mar. 2018
          Practical Course in Marine Bioscience and Technology I
          Spring, 農学部
        • From Apr. 2017, To Mar. 2018
          Seminar in Marine Bioresources Science
          Year-long, 農学部
        • From Apr. 2017, To Mar. 2018
          Laboratory Course in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2017, To Mar. 2018
          Laboratory Course in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2017, To Mar. 2018
          Laboratory Course in Marine Biology
          Year-long, 農学研究科
        • From Apr. 2017, To Mar. 2018
          Seminar in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2017, To Mar. 2018
          Seminar in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2017, To Mar. 2018
          Seminar in Marine Biology
          Year-long, 農学研究科
        • From Apr. 2017, To Mar. 2018
          Biology of Marine Resources
          Fall, 農学研究科
        • From Apr. 2017, To Mar. 2018
          Introduction to Foreign Literature in Bioresource Science I
          Spring, 農学部
        • From Apr. 2017, To Mar. 2018
          Outline of Agricultural Science II
          Fall, 農学部
        • From Apr. 2018, To Mar. 2019
          Physiology
          Spring, 農学部
        • From Apr. 2018, To Mar. 2019
          Ecology of Marine Organisms
          Spring, 農学部
        • From Apr. 2018, To Mar. 2019
          Physiology of Marine Organisms
          Fall, 農学部
        • From Apr. 2018, To Mar. 2019
          Marine Biological Science
          Fall, 農学部
        • From Apr. 2018, To Mar. 2019
          Practical Course in Marine Bioscience and Technology I
          Spring, 農学部
        • From Apr. 2018, To Mar. 2019
          Seminar in Marine Bioresources Science
          Year-long, 農学部
        • From Apr. 2018, To Mar. 2019
          Laboratory Course in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2018, To Mar. 2019
          Laboratory Course in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2018, To Mar. 2019
          Seminar in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2018, To Mar. 2019
          Seminar in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2019, To Mar. 2020
          Physiology
          Spring, 農学部
        • From Apr. 2019, To Mar. 2020
          Ecology of Marine Organisms
          Spring, 農学部
        • From Apr. 2019, To Mar. 2020
          Physiology of Marine Organisms
          Fall, 農学部
        • From Apr. 2019, To Mar. 2020
          Marine Biological Science
          Fall, 農学部
        • From Apr. 2019, To Mar. 2020
          Practical Course in Marine Bioscience and Technology I
          Spring, 農学部
        • From Apr. 2019, To Mar. 2020
          Seminar in Marine Bioresources Science
          Year-long, 農学部
        • From Apr. 2019, To Mar. 2020
          Laboratory Course in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2019, To Mar. 2020
          Laboratory Course in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2019, To Mar. 2020
          Seminar in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2019, To Mar. 2020
          Seminar in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2019, To Mar. 2020
          Biology of Marine Resources
          Fall, 農学研究科
        • From Apr. 2019, To Mar. 2020
          Introduction to Foreign Literature in Bioresource Science II
          Fall, 農学部
        • From Apr. 2020, To Mar. 2021
          Physiology
          Spring, 農学部
        • From Apr. 2020, To Mar. 2021
          Ecology of Marine Organisms
          Spring, 農学部
        • From Apr. 2020, To Mar. 2021
          Physiology of Marine Organisms
          Fall, 農学部
        • From Apr. 2020, To Mar. 2021
          Marine Biological Science
          Fall, 農学部
        • From Apr. 2020, To Mar. 2021
          Practical Course in Marine Bioscience and Technology I
          Spring, 農学部
        • From Apr. 2020, To Mar. 2021
          Seminar in Marine Bioresources Science
          Year-long, 農学部
        • From Apr. 2020, To Mar. 2021
          Laboratory Course in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2020, To Mar. 2021
          Laboratory Course in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2020, To Mar. 2021
          Seminar in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2020, To Mar. 2021
          Seminar in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2020, To Mar. 2021
          Biology of Marine Resources
          Spring, 農学研究科
        • From Apr. 2020, To Mar. 2021
          Introduction to Foreign Literature in Bioresource Science II
          Fall, 農学部
        • From Apr. 2021, To Mar. 2022
          Physiology
          Spring, 農学部
        • From Apr. 2021, To Mar. 2022
          Ecology of Marine Organisms
          Spring, 農学部
        • From Apr. 2021, To Mar. 2022
          Physiology of Marine Organisms
          Fall, 農学部
        • From Apr. 2021, To Mar. 2022
          Marine Biological Science
          Fall, 農学部
        • From Apr. 2021, To Mar. 2022
          Practical Course in Marine Bioscience and Technology I
          Spring, 農学部
        • From Apr. 2021, To Mar. 2022
          Seminar in Marine Bioresources Science
          Year-long, 農学部
        • From Apr. 2021, To Mar. 2022
          Laboratory Course in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2021, To Mar. 2022
          Laboratory Course in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2021, To Mar. 2022
          Seminar in Marine Biology1
          Year-long, 農学研究科
        • From Apr. 2021, To Mar. 2022
          Seminar in Marine Biology2
          Year-long, 農学研究科
        • From Apr. 2021, To Mar. 2022
          Introduction to Foreign Literature in Bioresource Science II
          Fall, 農学部

        Participation in PhD Defense

        • Molecular mechanisms of environmentally cued hatching in false clownfish
          YAMANAKA SAKUTO, Graduate School of Agriculture, Sub-chief Examiner
          24 Mar. 2025
        • 海産絶滅危惧魚類アカメの遺伝的集団構造の解明および集団サイズの推定
          NAITO TAKUYA, Graduate School of Agriculture, Chief Examiner
          25 Mar. 2024
        list
          Last Updated :2025/06/02

          Administration

          Faculty management (title, position)

          • From 01 Apr. 2015, To 31 Mar. 2017
            国際交流委員会 委員
          • From 01 Apr. 2015, To 31 Mar. 2017
            フィールド科学教育研究センター海域ステーション舞鶴水産実験所共同利用運営委員会 委員
          • From 01 Apr. 2015, To 31 Mar. 2019
            総合博物館運営委員会 委員

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