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Depth-mediated reversal of the effects of climate change on long-term growth rates of exploited marine fish

机译:深度介导的气候变化对被开发海水鱼长期生长率的影响的逆转

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摘要

The oceanographic consequences of climate change are increasingly well documented, but the biological impacts of this change on marine species much less so, in large part because of few long-term data sets. Using otolith analysis, we reconstructed historical changes in annual growth rates for the juveniles of eight long-lived fish species in the southwest Pacific, from as early as 1861. Six of the eight species show significant changes in growth rates during the last century, with the pattern differing systematically with depth. Increasing temperatures near the ocean surface correlate with increasing growth rates by species found in depths <250 m, whereas growth rates of deep-water (>1,000 m) species have declined substantially during the last century, which correlates with evidence of long-term cooling at these depths. The observations suggest that global climate change has enhanced some elements of productivity of the shallow-water stocks but also has reduced the productivity, and possibly the resilience, of the already slow-growing deep-water species.
机译:气候变化对海洋造成的后果越来越有据可查,但是这种变化对海洋物种的生物学影响却要少得多,这在很大程度上是因为缺乏长期数据集。使用耳石分析,我们重建了早在1861年的西南太平洋八种长寿鱼类的年增长率的历史变化。八种鱼中有六种在上个世纪表现出显着的增长率,模式随着深度而系统地不同。海洋表面附近温度的升高与深度<250 m的物种的生长速率增加相关,而上水种(> 1,000 m)的生长速率在上个世纪已大幅下降,这与长期冷却的证据相关在这些深度。这些观察结果表明,全球气候变化提高了浅水种群生产力的某些要素,但也降低了已经缓慢增长的深水物种的生产力,甚至降低了其复原力。

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