4.5 Article

Stress in Atlantic salmon: response to unpredictable chronic stress

期刊

JOURNAL OF EXPERIMENTAL BIOLOGY
卷 218, 期 16, 页码 2538-2550

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COMPANY BIOLOGISTS LTD
DOI: 10.1242/jeb.120535

关键词

Salmo salar; Parr; Cortisol; HPI axis; crf; Gene study; Brain; Hypothalamus; Pituitary gland; Head kidney

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资金

  1. European Community's Seventh Framework Programme [265957 - COPEWELL]

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Combinations of stressors occur regularly throughout an animal's life, especially in agriculture and aquaculture settings. If an animal fails to acclimate to these stressors, stress becomes chronic, and a condition of allostatic overload arises with negative results for animal welfare. In the current study, we describe effects of exposing Atlantic salmon parr to an unpredictable chronic stressor (UCS) paradigm for 3 weeks. The paradigm involves exposure of fish to seven unpredictable stressors three times a day. At the end of the trial, experimental and control fish were challenged with yet another novel stressor and sampled before and 1 h after that challenge. Plasma cortisol decreased steadily over time in stressed fish, indicative of exhaustion of the endocrine stress axis. This was confirmed by a lower cortisol response to the novel stressor at the end of the stress period in chronically stressed fish compared with the control group. In the preoptic area (POA) and pituitary gland, chronic stress resulted in decreased gene expression of 11 beta hsd2, gr1 and gr2 in the POA and increased expression of those genes in the pituitary gland. POA crf expression and pituitary expression of pomcs and mr increased, whereas interrenal gene expression was unaffected. Exposure to the novel stressor had no effect on POA and interrenal gene expression. In the pituitary, crfr1, pomcs, 11 beta hsd2, grs and mr were downregulated. In summary, our results provide a novel overview of the dynamic changes that occur at every level of the hypothalamicpituitary gland-interrenal gland (HPI) axis as a result of chronic stress in Atlantic salmon.

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