Literature DB >> 22237290

Sex and proximity to reproductive maturity influence the survival, final maturation, and blood physiology of Pacific salmon when exposed to high temperature during a simulated migration.

Ken M Jeffries1, Scott G Hinch, Eduardo G Martins, Timothy D Clark, Andrew G Lotto, David A Patterson, Steven J Cooke, Anthony P Farrell, Kristina M Miller.   

Abstract

Some Pacific salmon populations have been experiencing increasingly warmer river temperatures during their once-in-a-lifetime spawning migration, which has been associated with en route and prespawn mortality. The mechanisms underlying such temperature-mediated mortality are poorly understood. Wild adult pink (Oncorhynchus gorbuscha) and sockeye (Oncorhynchus nerka) salmon were used in this study. The objectives were to investigate the effects of elevated water temperature on mortality, final maturation, and blood properties under controlled conditions that simulated a "cool" (13°C) and "warm" (19°C) freshwater spawning migration. After 10 d at 13°C, observed mortality was 50%-80% in all groups, which suggested that there was likely some mortality associated with handling and confinement. Observed mortality after 10 d at 19°C was higher, reaching ≥98% in male pink salmon and female pink and sockeye salmon. Thus, male sockeye salmon were the most thermally tolerant (54% observed mortality). Model selection supported the temperature- and sex-specific mortality patterns. The pink salmon were closer to reproductive maturation and farther along the senescence trajectory than sockeye salmon, which likely influenced their survival and physiological responses throughout the experiment. Females of both species held at 19°C had reduced plasma sex steroids compared with those held at 13°C, and female pink salmon were less likely to become fully mature at 19° than at 13°C. Male and female sockeye salmon held at 19°C had higher plasma chloride and osmolality than those held at 13°C, indicative of a thermally related stress response. These findings suggest that sex differences and proximity to reproductive maturity must be considered when predicting thermal tolerance and the magnitude of en route and prespawn mortality for Pacific salmon.

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Year:  2011        PMID: 22237290     DOI: 10.1086/663770

Source DB:  PubMed          Journal:  Physiol Biochem Zool        ISSN: 1522-2152            Impact factor:   2.247


  14 in total

Review 1.  Conservation physiology in practice: how physiological knowledge has improved our ability to sustainably manage Pacific salmon during up-river migration.

Authors:  Steven J Cooke; Scott G Hinch; Michael R Donaldson; Timothy D Clark; Erika J Eliason; Glenn T Crossin; Graham D Raby; Ken M Jeffries; Mike Lapointe; Kristi Miller; David A Patterson; Anthony P Farrell
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2012-06-19       Impact factor: 6.237

2.  Does the degree of endocrine dyscrasia post-reproduction dictate post-reproductive lifespan? Lessons from semelparous and iteroparous species.

Authors:  Craig S Atwood; Kentaro Hayashi; Sivan Vadakkadath Meethal; Tina Gonzales; Richard L Bowen
Journal:  Geroscience       Date:  2017-03-07       Impact factor: 7.713

3.  Sex-specific differences in swimming, aerobic metabolism and recovery from exercise in adult coho salmon (Oncorhynchus kisutch) across ecologically relevant temperatures.

Authors:  K Kraskura; E A Hardison; A G Little; T Dressler; T S Prystay; B Hendriks; A P Farrell; S J Cooke; D A Patterson; S G Hinch; E J Eliason
Journal:  Conserv Physiol       Date:  2021-04-24       Impact factor: 3.079

4.  Physiological benefits of being small in a changing world: responses of Coho salmon (Oncorhynchus kisutch) to an acute thermal challenge and a simulated capture event.

Authors:  Timothy D Clark; Michael R Donaldson; Sebastian Pieperhoff; S Matthew Drenner; Andrew Lotto; Steven J Cooke; Scott G Hinch; David A Patterson; Anthony P Farrell
Journal:  PLoS One       Date:  2012-06-13       Impact factor: 3.240

5.  Transcriptomic responses to high water temperature in two species of Pacific salmon.

Authors:  Ken M Jeffries; Scott G Hinch; Thomas Sierocinski; Paul Pavlidis; Kristi M Miller
Journal:  Evol Appl       Date:  2013-11-12       Impact factor: 5.183

Review 6.  A perspective on physiological studies supporting the provision of scientific advice for the management of Fraser River sockeye salmon (Oncorhynchus nerka).

Authors:  David A Patterson; Steven J Cooke; Scott G Hinch; Kendra A Robinson; Nathan Young; Anthony P Farrell; Kristina M Miller
Journal:  Conserv Physiol       Date:  2016-08-26       Impact factor: 3.079

7.  Consequences of high temperatures and premature mortality on the transcriptome and blood physiology of wild adult sockeye salmon (Oncorhynchus nerka).

Authors:  Ken M Jeffries; Scott G Hinch; Thomas Sierocinski; Timothy D Clark; Erika J Eliason; Michael R Donaldson; Shaorong Li; Paul Pavlidis; Kristi M Miller
Journal:  Ecol Evol       Date:  2012-07       Impact factor: 2.912

8.  Facing the river gauntlet: understanding the effects of fisheries capture and water temperature on the physiology of coho salmon.

Authors:  Graham D Raby; Timothy D Clark; Anthony P Farrell; David A Patterson; Nolan N Bett; Samantha M Wilson; William G Willmore; Cory D Suski; Scott G Hinch; Steven J Cooke
Journal:  PLoS One       Date:  2015-04-22       Impact factor: 3.752

9.  Detection and mapping of QTL for temperature tolerance and body size in Chinook salmon (Oncorhynchus tshawytscha) using genotyping by sequencing.

Authors:  Meredith V Everett; James E Seeb
Journal:  Evol Appl       Date:  2014-03-04       Impact factor: 5.183

10.  Observable impairments predict mortality of captured and released sockeye salmon at various temperatures.

Authors:  Marika Kirstin Gale; Scott G Hinch; Steven J Cooke; Michael R Donaldson; Erika J Eliason; Ken M Jeffries; Eduardo G Martins; David A Patterson
Journal:  Conserv Physiol       Date:  2014-08-14       Impact factor: 3.079

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