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Neutral lipid fatty acid composition as trait and constraint in Collembola evolution

机译:中性脂质脂肪酸组成是Collembola进化的特征和制约因素

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摘要

Functional traits determine the occurrence of species along environmental gradients and their coexistence with other species. Understanding how traits evolved among coexisting species helps to infer community assembly processes. We propose fatty acid composition in consumer tissue as a functional trait related to both food resources and physiological functions of species. We measured phylogenetic signal in fatty acid profiles of 13 field‐sampled Collembola (springtail) species and then combined the data with published fatty acid profiles of another 24 species. Collembola fatty acid profiles generally showed phylogenetic signal, with related species resembling each other. Long‐chain polyunsaturated fatty acids, related to physiological functions, demonstrated phylogenetic signal. In contrast, most food resource biomarker fatty acids and the ratios between bacterial, fungal, and plant biomarker fatty acids exhibited no phylogenetic signal. Presumably, fatty acids related to physiological functions have been constrained during Collembola evolutionary history: Species with close phylogenetic affinity experienced similar environments during divergence, while niche partitioning in food resources among closely related species favored species coexistence. Measuring phylogenetic signal in ecologically relevant traits of coexisting species provides an evolutionary perspective to contemporary assembly processes of ecological communities. Integrating phylogenetic comparative methods with community phylogenetic and trait‐based approaches may compensate for the limitations of each method when used alone and improve understanding of processes driving and maintaining assembly patterns.
机译:功能性状决定沿着环境梯度发生的物种及其与其他物种的共存。了解共存物种之间的性状如何进化有助于推断社区组装过程。我们提出消费者组织中的脂肪酸组成作为与食物资源和物种生理功能相关的功能性状。我们在13种田间采样的Collembola(跳尾)物种的脂肪酸谱中测量了系统发育信号,然后将数据与其他24种的已公布脂肪酸谱相结合。 Collembola脂肪酸谱通常显示出系统发生信号,相关物种彼此相似。与生理功能有关的长链多不饱和脂肪酸显示出系统发生信号。相反,大多数食品资源生物标志物脂肪酸以及细菌,真菌和植物生物标志物脂肪酸之间的比例均未显示系统发育信号。据推测,与生理功能有关的脂肪酸在Collembola的进化历史中受到了限制:具有紧密亲缘关系的物种在分化过程中经历了相似的环境,而在密切相关物种之间的食物资源生态位分配有利于物种共存。在共存物种的生态相关特征中测量系统发生信号,为当代生态群落的组装过程提供了进化的视角。将系统发育比较方法与社区系统发育和基于特征的方法相集成,可以弥补单独使用时每种方法的局限性,并增进对驱动和维持装配模式的过程的了解。

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