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首页> 外文期刊>Oikos: A Journal of Ecology >Ecological and evolutionary responses in complex communities: implications for invasions and eco-evolutionary feedbacks.
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Ecological and evolutionary responses in complex communities: implications for invasions and eco-evolutionary feedbacks.

机译:复杂社区中的生态和进化反应:对入侵和生态进化反馈的影响。

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摘要

It is easier to predict the ecological and evolutionary outcomes of interactions in less diverse communities. As species are added to communities, their direct and indirect interactions multiply, their niches may shift, and there may be increased ecological redundancy. Accompanying this complexity in ecological interactions, is also complexity in selection and subsequent evolution, which may feed back to affect the ecology of the system, as species with different traits may play different ecological roles. Drawing from my own work and that of many others, I first discuss what we currently understand about ecology and evolution in light of simple and diverse communities, and suggest the importance of escape from community complexity per se in the success of invaders. Then, I examine how community complexity may influence the nature and magnitude of eco-evolutionary feedbacks, classifying eco-evolutionary dynamics into three general types: those generating alternative stable states, cyclic dynamics, and those maintaining ecological stasis and stability. The latter may be important and yet very hard to detect. I suggest future directions, as well as discuss methodological approaches and their potential pitfalls, in assessing the importance and longevity of eco-evolutionary feedbacks in complex communities. Synthesis: The ecology, evolution and eco-evolutionary dynamics of simple and diverse communities are reviewed. In more diverse communities, direct and indirect interactions multiply, species' niches often shift, ecological redundancy can increase, and selection may be less directional. Community complexity may influence the magnitude and nature of eco-evolutionary dynamics, which are classified into three types: those generating alternative stable states, cyclic dynamics, and those maintaining ecological stasis and stability. Strengths and pitfalls of approaches to investigating eco-evolutionary feedbacks in complex field communities are discussed.
机译:在多样性较低的社区中,更容易预测相互作用的生态和进化结果。随着物种被添加到社区中,它们之间的直接和间接相互作用倍增,其生态位可能发生变化,并且生态冗余可能会增加。伴随生态相互作用的这种复杂性,选择和后续进化的复杂性也随之而来,由于具有不同性状的物种可能扮演不同的生态角色,这些反馈可能会影响系统的生态。首先,根据我自己和其他许多人的工作,我将根据简单多样的社区讨论我们目前对生态和进化的理解,并提出在成功入侵者中摆脱社区本身复杂性的重要性。然后,我研究了社区的复杂性如何影响生态进化反馈的性质和规模,将生态进化动力学分为三种一般类型:产生替代稳态,周期性动力学和维持生态停滞与稳定的动力学类型。后者可能很重要,但很难发现。在评估复杂社区中生态进化反馈的重要性和寿命时,我建议了未来的方向,并讨论了方法论方法及其潜在的陷阱。综合:综述了简单多样的社区的生态,演化和生态进化动态。在更多样化的社区中,直接和间接的相互作用会增加,物种的生态位通常会转移,生态冗余会增加,选择的方向可能会更少。群落的复杂性可能会影响生态进化动力学的规模和性质,生态进化动力学可分为三种类型:产生替代稳态,循环动力学的物种和维持生态停滞与稳定的物种。讨论了在复杂的野外社区调查生态进化反馈的方法的优缺点。

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