The saccus vasculosus of fish is a sensor of seasonal changes in day length

The pars tuberalis of the pituitary gland is the regulatory hub for seasonal reproduction in birds and mammals. Although fish also exhibit robust seasonal responses, they do not possess an anatomically distinct pars tuberalis. Here we report that the saccus vasculosus of fish is a seasonal sensor. W...

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Vydáno v:Nature communications Ročník 4; číslo 1; s. 2108
Hlavní autoři: Nakane, Yusuke, Ikegami, Keisuke, Iigo, Masayuki, Ono, Hiroko, Takeda, Korenori, Takahashi, Daisuke, Uesaka, Maiko, Kimijima, Meita, Hashimoto, Ramu, Arai, Natsumi, Suga, Takuya, Kosuge, Katsuya, Abe, Tomotaka, Maeda, Ryosuke, Senga, Takumi, Amiya, Noriko, Azuma, Teruo, Amano, Masafumi, Abe, Hideki, Yamamoto, Naoyuki, Yoshimura, Takashi
Médium: Journal Article
Jazyk:angličtina
Vydáno: London Nature Publishing Group UK 02.07.2013
Nature Publishing Group
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ISSN:2041-1723, 2041-1723
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Abstract The pars tuberalis of the pituitary gland is the regulatory hub for seasonal reproduction in birds and mammals. Although fish also exhibit robust seasonal responses, they do not possess an anatomically distinct pars tuberalis. Here we report that the saccus vasculosus of fish is a seasonal sensor. We observe expression of key genes regulating seasonal reproduction and rhodopsin family genes in the saccus vasculosus of masu salmon. Immunohistochemical studies demonstrate that all of these genes are expressed in the coronet cells of the saccus vasculosus, suggesting the existence of a photoperiodic signalling pathway from light input to neuroendocrine output. In addition, isolated saccus vasculosus has the capacity to respond to photoperiodic signals, and its removal abolishes photoperiodic response of the gonad. Although the physiological role of the saccus vasculosus has been a mystery for several centuries, our findings indicate that the saccus vasculosus acts as a sensor of seasonal changes in day length in fish. The saccus vasculosus is a circumventricular organ of the hypothalamus of many jawed fish whose function has remained a mystery for more than 300 years. Here the authors provide evidence that the saccus vasculosus functions as a sensor of seasonal changes in day length.
AbstractList The pars tuberalis of the pituitary gland is the regulatory hub for seasonal reproduction in birds and mammals. Although fish also exhibit robust seasonal responses, they do not possess an anatomically distinct pars tuberalis. Here we report that the saccus vasculosus of fish is a seasonal sensor. We observe expression of key genes regulating seasonal reproduction and rhodopsin family genes in the saccus vasculosus of masu salmon. Immunohistochemical studies demonstrate that all of these genes are expressed in the coronet cells of the saccus vasculosus, suggesting the existence of a photoperiodic signalling pathway from light input to neuroendocrine output. In addition, isolated saccus vasculosus has the capacity to respond to photoperiodic signals, and its removal abolishes photoperiodic response of the gonad. Although the physiological role of the saccus vasculosus has been a mystery for several centuries, our findings indicate that the saccus vasculosus acts as a sensor of seasonal changes in day length in fish.The pars tuberalis of the pituitary gland is the regulatory hub for seasonal reproduction in birds and mammals. Although fish also exhibit robust seasonal responses, they do not possess an anatomically distinct pars tuberalis. Here we report that the saccus vasculosus of fish is a seasonal sensor. We observe expression of key genes regulating seasonal reproduction and rhodopsin family genes in the saccus vasculosus of masu salmon. Immunohistochemical studies demonstrate that all of these genes are expressed in the coronet cells of the saccus vasculosus, suggesting the existence of a photoperiodic signalling pathway from light input to neuroendocrine output. In addition, isolated saccus vasculosus has the capacity to respond to photoperiodic signals, and its removal abolishes photoperiodic response of the gonad. Although the physiological role of the saccus vasculosus has been a mystery for several centuries, our findings indicate that the saccus vasculosus acts as a sensor of seasonal changes in day length in fish.
The pars tuberalis of the pituitary gland is the regulatory hub for seasonal reproduction in birds and mammals. Although fish also exhibit robust seasonal responses, they do not possess an anatomically distinct pars tuberalis. Here we report that the saccus vasculosus of fish is a seasonal sensor. We observe expression of key genes regulating seasonal reproduction and rhodopsin family genes in the saccus vasculosus of masu salmon. Immunohistochemical studies demonstrate that all of these genes are expressed in the coronet cells of the saccus vasculosus, suggesting the existence of a photoperiodic signalling pathway from light input to neuroendocrine output. In addition, isolated saccus vasculosus has the capacity to respond to photoperiodic signals, and its removal abolishes photoperiodic response of the gonad. Although the physiological role of the saccus vasculosus has been a mystery for several centuries, our findings indicate that the saccus vasculosus acts as a sensor of seasonal changes in day length in fish.
The pars tuberalis of the pituitary gland is the regulatory hub for seasonal reproduction in birds and mammals. Although fish also exhibit robust seasonal responses, they do not possess an anatomically distinct pars tuberalis. Here we report that the saccus vasculosus of fish is a seasonal sensor. We observe expression of key genes regulating seasonal reproduction and rhodopsin family genes in the saccus vasculosus of masu salmon. Immunohistochemical studies demonstrate that all of these genes are expressed in the coronet cells of the saccus vasculosus, suggesting the existence of a photoperiodic signalling pathway from light input to neuroendocrine output. In addition, isolated saccus vasculosus has the capacity to respond to photoperiodic signals, and its removal abolishes photoperiodic response of the gonad. Although the physiological role of the saccus vasculosus has been a mystery for several centuries, our findings indicate that the saccus vasculosus acts as a sensor of seasonal changes in day length in fish. The saccus vasculosus is a circumventricular organ of the hypothalamus of many jawed fish whose function has remained a mystery for more than 300 years. Here the authors provide evidence that the saccus vasculosus functions as a sensor of seasonal changes in day length.
ArticleNumber 2108
Author Takahashi, Daisuke
Ono, Hiroko
Abe, Hideki
Arai, Natsumi
Amano, Masafumi
Kosuge, Katsuya
Iigo, Masayuki
Maeda, Ryosuke
Azuma, Teruo
Abe, Tomotaka
Senga, Takumi
Takeda, Korenori
Amiya, Noriko
Yamamoto, Naoyuki
Ikegami, Keisuke
Uesaka, Maiko
Yoshimura, Takashi
Kimijima, Meita
Suga, Takuya
Nakane, Yusuke
Hashimoto, Ramu
Author_xml – sequence: 1
  givenname: Yusuke
  surname: Nakane
  fullname: Nakane, Yusuke
  organization: Department of Applied Molecular Biosciences, Laboratory of Animal Physiology, Graduate School of Bioagricultural Sciences, Nagoya University
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  givenname: Keisuke
  surname: Ikegami
  fullname: Ikegami, Keisuke
  organization: Department of Applied Molecular Biosciences, Laboratory of Animal Physiology, Graduate School of Bioagricultural Sciences, Nagoya University
– sequence: 3
  givenname: Masayuki
  surname: Iigo
  fullname: Iigo, Masayuki
  email: iigo@cc.utsunomiya-u.ac.jp
  organization: Department of Applied Biochemistry, Faculty of Agriculture, Utsunomiya University, Center for Bioscience Research and Education (C-Bio), Utsunomiya University, Utsunomiya University Center for Optical Research and Education (CORE), Department of Applied Life Science, United Graduate School of Agricultural Science, Tokyo University of Agriculture and Technology
– sequence: 4
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  givenname: Korenori
  surname: Takeda
  fullname: Takeda, Korenori
  organization: Department of Applied Biochemistry, Faculty of Agriculture, Utsunomiya University, Department of Applied Life Science, United Graduate School of Agricultural Science, Tokyo University of Agriculture and Technology, Tochigi Prefectural Fisheries Experimental Station
– sequence: 6
  givenname: Daisuke
  surname: Takahashi
  fullname: Takahashi, Daisuke
  organization: Department of Applied Biochemistry, Faculty of Agriculture, Utsunomiya University
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  givenname: Maiko
  surname: Uesaka
  fullname: Uesaka, Maiko
  organization: Department of Applied Biochemistry, Faculty of Agriculture, Utsunomiya University
– sequence: 8
  givenname: Meita
  surname: Kimijima
  fullname: Kimijima, Meita
  organization: Department of Applied Biochemistry, Faculty of Agriculture, Utsunomiya University
– sequence: 9
  givenname: Ramu
  surname: Hashimoto
  fullname: Hashimoto, Ramu
  organization: Department of Applied Biochemistry, Faculty of Agriculture, Utsunomiya University
– sequence: 10
  givenname: Natsumi
  surname: Arai
  fullname: Arai, Natsumi
  organization: Department of Applied Biochemistry, Faculty of Agriculture, Utsunomiya University
– sequence: 11
  givenname: Takuya
  surname: Suga
  fullname: Suga, Takuya
  organization: Department of Applied Biochemistry, Faculty of Agriculture, Utsunomiya University
– sequence: 12
  givenname: Katsuya
  surname: Kosuge
  fullname: Kosuge, Katsuya
  organization: Department of Applied Biochemistry, Faculty of Agriculture, Utsunomiya University
– sequence: 13
  givenname: Tomotaka
  surname: Abe
  fullname: Abe, Tomotaka
  organization: Department of Applied Biochemistry, Faculty of Agriculture, Utsunomiya University, Department of Applied Life Science, United Graduate School of Agricultural Science, Tokyo University of Agriculture and Technology
– sequence: 14
  givenname: Ryosuke
  surname: Maeda
  fullname: Maeda, Ryosuke
  organization: Department of Applied Molecular Biosciences, Laboratory of Animal Physiology, Graduate School of Bioagricultural Sciences, Nagoya University
– sequence: 15
  givenname: Takumi
  surname: Senga
  fullname: Senga, Takumi
  organization: Department of Applied Molecular Biosciences, Laboratory of Animal Physiology, Graduate School of Bioagricultural Sciences, Nagoya University
– sequence: 16
  givenname: Noriko
  surname: Amiya
  fullname: Amiya, Noriko
  organization: Laboratory of Fish Physiology, School of Marine Biosciences, Kitasato University
– sequence: 17
  givenname: Teruo
  surname: Azuma
  fullname: Azuma, Teruo
  organization: Freshwater Fisheries Research Department, National Research Institute of Fisheries Science
– sequence: 18
  givenname: Masafumi
  surname: Amano
  fullname: Amano, Masafumi
  organization: Laboratory of Fish Physiology, School of Marine Biosciences, Kitasato University
– sequence: 19
  givenname: Hideki
  surname: Abe
  fullname: Abe, Hideki
  organization: Department of Biological Mechanisms and Functions, Laboratory of Fish Biology, Graduate School of Bioagricultural Sciences, Nagoya University
– sequence: 20
  givenname: Naoyuki
  surname: Yamamoto
  fullname: Yamamoto, Naoyuki
  organization: Department of Biological Mechanisms and Functions, Laboratory of Fish Biology, Graduate School of Bioagricultural Sciences, Nagoya University
– sequence: 21
  givenname: Takashi
  surname: Yoshimura
  fullname: Yoshimura, Takashi
  email: takashiy@agr.nagoya-u.ac.jp
  organization: Department of Applied Molecular Biosciences, Laboratory of Animal Physiology, Graduate School of Bioagricultural Sciences, Nagoya University, Avian Bioscience Research Center, Graduate School of Bioagricultural Sciences, Nagoya University, Institute of Transformative Bio-molecules (WPI-ITbM), Nagoya University, Department of Enviornmental Biology, National Institute for Basic Biology
BackLink https://www.ncbi.nlm.nih.gov/pubmed/23820554$$D View this record in MEDLINE/PubMed
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  doi: 10.1073/pnas.1006393107
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Snippet The pars tuberalis of the pituitary gland is the regulatory hub for seasonal reproduction in birds and mammals. Although fish also exhibit robust seasonal...
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StartPage 2108
SubjectTerms 631/378/2620
631/601/2722
Animal Structures - cytology
Animal Structures - physiology
Animal Structures - ultrastructure
Animals
Autoradiography
Brain - metabolism
Cells, Cultured
Fishes - anatomy & histology
Fishes - genetics
Fishes - physiology
Gene Expression Regulation
Humanities and Social Sciences
Male
multidisciplinary
Multigene Family
Photoperiod
Reproduction - genetics
Rhodopsin - genetics
Rhodopsin - metabolism
Salmon
Science
Science (multidisciplinary)
Seasons
Signal Transduction - genetics
Testis - growth & development
Testis - metabolism
Title The saccus vasculosus of fish is a sensor of seasonal changes in day length
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Volume 4
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