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首页> 外文期刊>Global change biology >Acclimation to predicted ocean warming through developmental plasticity in a tropical reef fish.
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Acclimation to predicted ocean warming through developmental plasticity in a tropical reef fish.

机译:通过热带珊瑚鱼的发育可塑性适应预测的海洋变暖。

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Determining the capacity of organisms to acclimate and adapt to increased temperatures is key to understand how populations and communities will respond to global warming. Although there is evidence that elevated water temperature affects metabolism, growth and condition of tropical marine fish, it is unknown whether they have the potential to acclimate, given adequate time. We reared the tropical reef fish Acanthochromis polyacanthus through its entire life cycle at present day and elevated (+1.5 and+3.0 degrees C) water temperatures to test its ability to thermally acclimate to ocean temperatures predicted to occur over the next 50-100 years. Fish reared at 3.0 degrees C greater than the present day average reduced their resting oxygen consumption (RMR) during summer compared with fish reared at present day temperatures and tested at the elevated temperature. The reduction in RMR of up to 69 mg O2 kg-1 h-1 in acclimated fish could represent a significant benefit to daily energy expenditure. In contrast, there was no acclimation to summer temperatures exhibited by fish reared at 1.5 degrees C above present day temperatures. Fish acclimated to +3.0 degrees C were smaller and in poorer condition than fish reared at present day temperatures, suggesting that even with acclimation there will be significant consequences for future populations of tropical fishes caused by global warming.
机译:确定生物体适应和适应温度升高的能力是了解人口和社区如何应对全球变暖的关键。尽管有证据表明水温升高会影响热带海鱼的代谢,生长和状况,但在足够的时间内,它们是否具有适应环境的潜力尚不得而知。今天,我们在整个生命周期中养育了热带珊瑚鱼 Acanthochromis polyacanthus ,并升高了水温度(+1.5和+3.0摄氏度),以测试其热适应预计超过20年的海洋温度的能力未来50-100年。与在当前温度下饲养并在升高的温度下进行测试的鱼相比,在高于当前平均温度3.0摄氏度的情况下饲养的鱼在夏季减少了其静息耗氧量(RMR)。适应鱼的RMR降低高达69 mg O 2 kg -1 h -1 可能代表每日能量消耗的显着益处。相反,在比当前温度高1.5摄氏度的条件下饲养的鱼没有适应夏天的温度。适应+3.0摄氏度的鱼类比当前温度下饲养的鱼类更小且条件更差,这表明即使适应气候变化,全球变暖也会对热带鱼的未来种群产生重大影响。

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