4.4 Article

Daily endocrine profiles in parr and smolt Atlantic salmon

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cbpa.2008.08.017

关键词

Development; Diurnal; Fish; Hormone; Photoperiod; Rhythm; Salmo salar; Smoltification

资金

  1. Royal Physiographic Society
  2. Swedish Natural Science Research Council
  3. Swedish Council for Forestry and Agriculture Research
  4. Research Council of Norway
  5. Collaborative Virtual University Education (VIRTUE) Program

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To elucidate possible mechanisms behind the endocrine control of parr-smolt transformation, the daily plasma profiles in thyroid hormones (TH; free thyroxine (FT4), total thyroxine (TT4), and total 3,5,3'-triiodothyronine (TT3)), growth hormone (GH) and cortisol were studied in Atlantic salmon parr and smolts under simulated-natural winter (8 L:16D) and spring (16.5 L:7.5D) photoperiods, respectively. Overall, TT4, TT3 and GH levels were higher in smolts than in part, whereas FT4 levels fluctuated within the same range in parr and smolts. Significant diurnal changes in plasma TH were present in parr. Both FT4 and TT4 levels increased during the photophase and decreased during the scotophase, while TT3 levels followed an inverse pattern. Growth hormone showed no significant changes in part. Changes in FT4, TT4, GH, and cortisol, but not TT3, levels, were observed in smolts with peak levels during both the photophase and scotophase for FT4, TT4 and GH. Plasma cortisol was not assayed in parr but in smolts the peaks were associated with dusk and dawn. In addition to the general increases in TH, GH and cortisol, the distinct endocrine differences in nighttime levels between part in the winter and smolts in the spring suggest different interactions between TH, GH, cortisol and melatonin at these different time points. These spring scotophase endocrine profiles may represent synergistic hormone interactions that promote smolt development, similar to the synergistic endocrine interactions shown to accelerate anuran metamorphosis. The variations in these diurnal rhythms between parr and smolts may represent part of the endocrine mechanism for the translation of seasonal information during salmon smoltification. (C) 2008 Elsevier Inc. All rights reserved.

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