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Rising temperatures may drive fishing-induced selection of low-performance phenotypes

机译:温度升高可能会导致钓鱼导致的低性能表型的选择

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摘要

Climate warming is likely to interact with other stressors to challenge the physiological capacities and survival of phenotypes within populations. This may be especially true for the billions of fishes per year that undergo vigorous exercise prior to escaping or being intentionally released from fishing gear. Using adult coral grouper (Plectropomus leopardus), an important fisheries species throughout the Indo-Pacific, we show that population-level survival following vigorous exercise is increasingly compromised as temperatures increase from current-day levels (100–67% survival at 24–30 °C) to those projected for the end of the century (42% survival at 33 °C). Intriguingly, we demonstrate that high-performance individuals take longer to recover to a resting metabolic state and subsequently have lower survival in warm water compared with conspecifics that exercise less vigorously. Moreover, we show that post-exercise mortality of high-performance phenotypes manifests after 3–13 d at the current summer maximum (30 °C), while mortality at 33 °C occurs within 1.8–14.9 h. We propose that wild populations in a warming climate may become skewed towards low-performance phenotypes with ramifications for predator-prey interactions and community dynamics. Our findings highlight the susceptibility of phenotypic diversity to fishing activities and demonstrate a mechanism that may contribute to fishing-induced evolution in the face of ongoing climate change.
机译:气候变暖很可能与其他压力源相互作用,以挑战人口中表型的生理能力和生存。对于每年有数十亿条鱼在逃逸或有意从渔具中释放之前进行剧烈运动,尤其如此。使用成年珊瑚石斑鱼(Plectropomus leopardus)(整个印度洋-太平洋地区的重要渔业物种),我们发现随着温度从当前水平升高(在24-30时100-67%的存活率),剧烈运动后的种群水平生存率越来越受到损害。 °C)到本世纪末的预测值(在33 C下生存率为42%)。有趣的是,我们证明,与运动强度较低的同种异体相比,高性能个体需要更长的时间才能恢复到静止的代谢状态,因此在温水中的存活率较低。此外,我们表明,高性能表型的运动后死亡率在当前夏季最高温度(30℃)下3-13 d后表现出来,而33℃下的死亡率在1.8-14.9 h内出现。我们建议,在气候变暖的野生种群可能会偏向低效表型,对捕食者与猎物之间的相互作用和社区动态产生影响。我们的发现凸显了表型多样性对捕捞活动的敏感性,并说明了面对不断变化的气候变化可能有助于捕捞引起的进化的机制。

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