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Ecological and life history traits explain a climate-induced shift in a temperate marine fish community

机译:生态和生活史特征解释了温带海洋鱼类群落中气候引起的转变

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A better understanding of community dynamics and ecosystem functioning can be achieved by describing how community functional structure responds to environmental change over both time and space and by identifying which functional groups best mediate community responses. Here, we used a trait-based approach in combination with a newly developed application of principal response curves to functionally characterize a rapid taxonomic shift in the eastern English Channel fish community in the late 1990s. We identified the functional groups with the greatest contributions to the overall shift in fish functional structure and uncovered significant trait-environment relationships. We found that pelagic species with rapid life history cycles, characterized by broadcast spawning, small offspring size, and early maturation, declined considerably in abundance following an increase in sea surface temperature associated with a warming phase of the Atlantic Multidecadal Oscillation, which was likely exacerbated by historical fishing pressure. In contrast, species with late maturation, high parental care, and few, well-developed offspring increased in abundance, reinforcing that fish community responses to climate warming are strongly mediated through life history traits. By examining how environmental factors drove a community shift at the trait level, we provide a mechanistic understanding of how fish functional structure responds to rapid environmental change.
机译:通过描述社区功能结构如何在时间和空间上对环境变化做出响应,并确定哪些功能组最能调解社区响应,可以更好地了解社区动态和生态系统功能。在这里,我们结合了基于特征的方法和主要响应曲线的新开发应用,以功能性地描述了1990年代后期东部英吉利海峡鱼类群落的快速分类学变化。我们确定了对鱼类功能结构的总体转变贡献最大的功能组,并发现了重要的性状与环境的关系。我们发现,具有较快的生命历史周期的浮游物种,其特征是广播产卵,较小的后代大小和早期成熟,随着海面温度升高以及大西洋多年代际涛动的变暖阶段而增加,丰度显着下降,这可能会加剧受历史捕鱼压力的影响。相比之下,具有较晚成熟,较高的父母关怀和极少发达的后代的物种的丰度增加,这增强了鱼类群落对气候变暖的反应是通过生活史特征强烈介导的。通过研究环境因素如何推动性状水平上的社区转移,我们对鱼类功能结构如何对快速的环境变化做出反应提供了机械的理解。

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