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Large but uneven reduction in fish size across species in relation to changing sea temperatures

机译:与换海温度有关的物种,鱼鳞的大而不均匀

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Ectotherms often attain smaller body sizes when they develop at higher temperatures. This phenomenon, known as the temperature-size rule, has important consequences for global fisheries, whereby ocean warming is predicted to result in smaller fish and reduced biomass. However, the generality of this phenomenon and the mechanisms that drive it in natural populations remain unresolved. In this study, we document the maximal size of 74 fish species along a steep temperature gradient in the Mediterranean Sea and find strong support for the temperature-size rule. Importantly, we additionally find that size reduction in active fish species is dramatically larger than for more sedentary species. As the temperature dependence of oxygen consumption depends on activity levels, these findings are consistent with the hypothesis that oxygen is a limiting factor shaping the temperature-size rule in fishes. These results suggest that ocean warming will result in a sharp, but uneven, reduction in fish size that will cause major shifts in size-dependent interactions. Moreover, warming will have major implications for fisheries as the main species targeted for harvesting will show the most substantial declines in biomass.
机译:当它们在较高温度下发展时,Ectotherms通常会达到较小的身体尺寸。这种现象称为温度规则,对全球渔业具有重要影响,预计海洋变暖导致较小的鱼类和降低生物质。然而,这种现象的一般性和驱动它在天然群体中的机制仍未得到解决。在这项研究中,我们在地中海的陡峭温度梯度沿着陡峭的温度梯度记录了74种鱼类的最大尺寸,并找到了对温度尺寸规则的强烈支持。重要的是,我们还发现活性鱼类的尺寸减小大幅大于更久坐的物种。随着氧气消耗的温度依赖性取决于活动水平,这些发现与氧气是塑造鱼类中温度规则的限制因素的假设一致。这些结果表明,海洋变暖会导致尖锐,但不均匀,鱼鳞减少,这将导致大小依赖性相互作用。此外,随着针对收获的主要物种将显示生物质的主要含量,变暖将对渔业产生重大影响。

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