Effects of climate change on fish reproduction and early life history stages

Влияние изменения климата на размножение рыб и ранние этапы жизненного цикла
Philip L. Munday, N. W. Pankhurst
2011-09-21

climate changeearly life historyfish reproductionlarval fish sensitivityocean acidification
Seasonal change in temperature has a profound effect on reproduction in fish. Increasing temperatures cue reproductive development in spring-spawning species, and falling temperatures stimulate reproduction in autumn-spawners. Elevated temperatures truncate spring spawning, and delay autumn spawning. Temperature increases will affect reproduction, but the nature of these effects will depend on the period and amplitude of the increase and range from phase-shifting of spawning to complete inhibition of reproduction. This latter effect will be most marked in species that are constrained in their capacity to shift geographic range. Studies from a range of taxa, habitats and temperature ranges all show inhibitory effects of elevated temperature albeit about different environmental set points. The effects are generated through the endocrine system, particularly through the inhibition of ovarian oestrogen production. Larval fishes are usually more sensitive than adults to environmental fluctuations, and might be especially vulnerable to climate change. In addition to direct effects on embryonic duration and egg survival, temperature also influences size at hatching, developmental rate, pelagic larval duration and survival. A companion effect of marine climate change is ocean acidification, which may pose a significant threat through its capacity to alter larval behaviour and impair sensory capabilities. This in turn impacts on population replenishment and connectivity patterns of marine fishes.
1
Elevated temperatures can truncate spring spawning or delay autumn spawning, with effects ranging from spawning phase shifts to complete reproductive inhibition.
2
Fish larvae are generally more sensitive than adults to environmental fluctuations; warming alters embryonic duration, egg survival, hatchling size, developmental rate, larval duration, and survival.
3
Ocean acidification may impair larval behaviour and sensory capabilities, potentially reducing population replenishment and altering marine fish connectivity.
4
Reproductive inhibition from warming is mediated through the endocrine system, particularly suppression of ovarian oestrogen production, and is strongest in range-constrained species.
5
Seasonal temperature changes regulate fish reproduction: warming induces spring spawning, whereas cooling stimulates autumn spawning.

Fish reproduction and early life history stages under climate change

Effects of elevated temperature and ocean acidification on spawning, endocrine regulation, embryonic and larval development, survival, behavior, and population replenishment/connectivity

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2011-09-21
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Philip L. Munday
N. W. Pankhurst
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