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鱼类对气候变化的生理和进化响应。

Plastic and evolutionary responses to climate change in fish.

机构信息

Northwest Fisheries Science Center Seattle, WA, USA.

Department of Biology, Dalhousie University Halifax, NS, Canada ; Department of Biosciences, Centre for Ecological and Evolutionary Synthesis, University of Oslo Oslo, Norway.

出版信息

Evol Appl. 2014 Jan;7(1):68-87. doi: 10.1111/eva.12135. Epub 2014 Jan 2.

Abstract

The physical and ecological 'fingerprints' of anthropogenic climate change over the past century are now well documented in many environments and taxa. We reviewed the evidence for phenotypic responses to recent climate change in fish. Changes in the timing of migration and reproduction, age at maturity, age at juvenile migration, growth, survival and fecundity were associated primarily with changes in temperature. Although these traits can evolve rapidly, only two studies attributed phenotypic changes formally to evolutionary mechanisms. The correlation-based methods most frequently employed point largely to 'fine-grained' population responses to environmental variability (i.e. rapid phenotypic changes relative to generation time), consistent with plastic mechanisms. Ultimately, many species will likely adapt to long-term warming trends overlaid on natural climate oscillations. Considering the strong plasticity in all traits studied, we recommend development and expanded use of methods capable of detecting evolutionary change, such as the long term study of selection coefficients and temporal shifts in reaction norms, and increased attention to forecasting adaptive change in response to the synergistic interactions of the multiple selection pressures likely to be associated with climate change.

摘要

过去一个世纪以来,人为气候变化在物理和生态方面的“指纹”在许多环境和生物分类群中都有详细记录。我们回顾了鱼类对近期气候变化表型响应的证据。洄游和繁殖时间、成熟年龄、幼鱼洄游年龄、生长、存活和繁殖力的变化主要与温度变化有关。尽管这些特征可以快速进化,但只有两项研究正式将表型变化归因于进化机制。最常使用的基于相关性的方法主要指向对环境变异性的“细粒度”种群响应(即相对于世代时间的快速表型变化),与可塑性机制一致。最终,许多物种可能会适应长期的变暖趋势,而这种趋势是叠加在自然气候波动之上的。考虑到所有研究特征的强可塑性,我们建议开发和扩大能够检测进化变化的方法的使用,例如长期研究选择系数和反应规范的时间变化,并更加关注预测适应性变化,以应对可能与气候变化相关的多种选择压力的协同相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1047/3894899/0db4bcaab12a/eva0007-0068-f1.jpg

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