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Climate change in the oceans: evolutionary versus phenotypically plastic responses of marine animals and plants

机译:海洋中的气候变化:海洋动植物的进化与表型塑性响应

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摘要

I summarize marine studies on plastic versus adaptive responses to global change. Due to the lack of time series, this review focuses largely on the potential for adaptive evolution in marine animals and plants. The approaches were mainly synchronic comparisons of phenotypically divergent populations, substituting spatial contrasts in temperature or CO2 environments for temporal changes, or in assessments of adaptive genetic diversity within populations for traits important under global change. The available literature is biased towards gastropods, crustaceans, cnidarians and macroalgae. Focal traits were mostly environmental tolerances, which correspond to phenotypic buffering, a plasticity type that maintains a functional phenotype despite external disturbance. Almost all studies address coastal species that are already today exposed to fluctuations in temperature, pH and oxygen levels. Recommendations for future research include (i) initiation and analyses of observational and experimental temporal studies encompassing diverse phenotypic traits (including diapausing cues, dispersal traits, reproductive timing, morphology) (ii) quantification of nongenetic trans-generational effects along with components of additive genetic variance (iii) adaptive changes in microbe–host associations under the holobiont model in response to global change (iv) evolution of plasticity patterns under increasingly fluctuating environments and extreme conditions and (v) joint consideration of demography and evolutionary adaptation in evolutionary rescue approaches.
机译:我总结了有关可塑性与对全球变化的适应性反应的海洋研究。由于缺乏时间序列,本综述主要侧重于海洋动植物适应性进化的潜力。这些方法主要是对表型上不同的种群进行同步比较,用温度或CO2环境中的空间对比来替代时间变化,或者用种群内的适应性遗传多样性来评估全球变化下重要的性状。现有文献偏向于腹足类,甲壳类,刺胞类和大型藻类。焦点特征主要是环境耐受性,与表型缓冲相对应,表型缓冲是一种可塑性类型,尽管受到外部干扰,仍保持功能性表型。几乎所有研究都针对今天已经暴露于温度,pH和氧气水平波动的沿海物种。对未来研究的建议包括(i)开展观察性和实验性时间研究,包括各种表型性状(包括滞育线索,传播性状,生殖时间,形态)的启动和分析(ii)非遗传性跨世代效应的定量以及加性遗传的组成部分方差(iii)在holobiont模型下微生物与宿主之间的适应性变化,以响应全球变化(iv)在日益波动的环境和极端条件下可塑性模式的演变,以及(v)在进化救援方法中共同考虑人口统计学和进化适应。

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