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下一代分子技术时代的社区遗传学。

Community genetics in the time of next-generation molecular technologies.

机构信息

WSL Swiss Federal Research Institute, 8903, Birmensdorf, Switzerland.

出版信息

Mol Ecol. 2013 Jun;22(12):3198-207. doi: 10.1111/mec.12300.

Abstract

Understanding the interactions of co-occurring species within and across trophic levels provides key information needed for understanding the ecological and evolutionary processes that underlie biological diversity. As genetics has only recently been integrated into the study of community-level interactions, the time is right for a critical evaluation of potential new, gene-based approaches to studying communities. Next-generation molecular techniques, used in parallel with field-based observations and manipulative experiments across spatio-temporal gradients, are key to expanding our understanding of community-level processes. Here, we introduce a variety of '-omics' tools, with recent studies of plant-insect herbivores and of ectomycorrhizal systems providing detailed examples of how next-generation approaches can revolutionize our understanding of interspecific interactions. We suggest ways that novel technologies may convert community genetics from a field that relies on correlative inference to one that reveals causal mechanisms of genetic co-variation and adaptations within communities.

摘要

理解同一营养级和跨营养级的共存物种之间的相互作用,为理解生物多样性的生态和进化过程提供了关键信息。由于遗传学最近才被纳入群落水平相互作用的研究,现在正是对基于基因的新方法进行批判性评估的好时机,这些方法可用于研究群落。下一代分子技术与基于实地的观测和跨时空梯度的可操作实验一起使用,是扩展我们对群落水平过程理解的关键。在这里,我们介绍了各种“组学”工具,最近对植物-昆虫草食动物和外生菌根系统的研究提供了详细的例子,说明了下一代方法如何彻底改变我们对种间相互作用的理解。我们提出了一些方法,新技术可能会将群落遗传学从一个依赖相关性推断的领域转变为一个揭示遗传共变和社区内适应的因果机制的领域。

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