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21 世纪末北大西洋鳕鱼的热膨胀潜力。

Thermal growth potential of Atlantic cod by the end of the 21st century.

机构信息

Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, PO Box 120161, Bremerhaven, D-27570, Germany.

出版信息

Glob Chang Biol. 2016 Dec;22(12):4162-4168. doi: 10.1111/gcb.13375. Epub 2016 Jul 4.

Abstract

Ocean warming may lead to smaller body sizes of marine ectotherms, because metabolic rates increase exponentially with temperature while the capacity of the cardiorespiratory system to match enhanced oxygen demands is limited. Here, we explore the impact of rising sea water temperatures on Atlantic cod (Gadus morhua), an economically important fish species. We focus on changes in the temperature-dependent growth potential by a transfer function model combining growth observations with climate model ensemble temperatures. Growth potential is expressed in terms of asymptotic body weight and depends on water temperature. We consider changes between the periods 1985-2004 and 2081-2100, assuming that future sea water temperatures will evolve according to climate projections for IPCC AR5 scenario RCP8.5. Our model projects a response of Atlantic cod to future warming, differentiated according to ocean regions, leading to increases of asymptotic weight in the Barents Sea, while weights are projected to decline at the southern margin of the biogeographic range. Southern spawning areas will disappear due to thermal limitation of spawning stages. These projections match the currently observed biogeographic shifts and the temperature- and oxygen-dependent decline in routine aerobic scope at southern distribution limits.

摘要

海洋变暖可能导致海洋外温动物的体型变小,因为代谢率随温度呈指数级增长,而心肺系统的能力来匹配增强的氧气需求是有限的。在这里,我们探讨了海水温度上升对大西洋鳕鱼(Gadus morhua)的影响,大西洋鳕鱼是一种具有重要经济价值的鱼类。我们专注于通过结合生长观察和气候模型集合温度的传递函数模型来研究与温度相关的生长潜力的变化。生长潜力以渐近体重表示,并取决于水温度。我们考虑了 1985-2004 年和 2081-2100 年期间的变化,假设未来的海水温度将根据 IPCC AR5 情景 RCP8.5 的气候预测而演变。我们的模型预测了大西洋鳕鱼对未来变暖的反应,根据海洋区域进行了区分,导致巴伦支海的渐近体重增加,而在生物地理范围的南部边缘预计体重将下降。由于产卵阶段的热限制,南部产卵区将消失。这些预测与目前观察到的生物地理变化以及在南部分布限制处与温度和氧气相关的常规需氧量下降相匹配。

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