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物种辐射的分子生态学研究:当前的研究差距、机遇与挑战

Molecular ecology studies of species radiations: current research gaps, opportunities and challenges.

作者信息

de la Harpe Marylaure, Paris Margot, Karger Dirk N, Rolland Jonathan, Kessler Michael, Salamin Nicolas, Lexer Christian

机构信息

Department of Biology, University of Fribourg, Chemin du Musée 10, Fribourg, CH-1700, Switzerland.

Department of Botany and Biodiversity Research, University of Vienna, Rennweg 14, Vienna, A-1030, Austria.

出版信息

Mol Ecol. 2017 May;26(10):2608-2622. doi: 10.1111/mec.14110. Epub 2017 Apr 28.

Abstract

Understanding the drivers and limits of species radiations is a crucial goal of evolutionary genetics and molecular ecology, yet research on this topic has been hampered by the notorious difficulty of connecting micro- and macroevolutionary approaches to studying the drivers of diversification. To chart the current research gaps, opportunities and challenges of molecular ecology approaches to studying radiations, we examine the literature in the journal Molecular Ecology and revisit recent high-profile examples of evolutionary genomic research on radiations. We find that available studies of radiations are highly unevenly distributed among taxa, with many ecologically important and species-rich organismal groups remaining severely understudied, including arthropods, plants and fungi. Most studies employed molecular methods suitable over either short or long evolutionary time scales, such as microsatellites or restriction site-associated DNA sequencing (RAD-seq) in the former case and conventional amplicon sequencing of organellar DNA in the latter. The potential of molecular ecology studies to address and resolve patterns and processes around the species level in radiating groups of taxa is currently limited primarily by sample size and a dearth of information on radiating nuclear genomes as opposed to organellar ones. Based on our literature survey and personal experience, we suggest possible ways forward in the coming years. We touch on the potential and current limitations of whole-genome sequencing (WGS) in studies of radiations. We suggest that WGS and targeted ('capture') resequencing emerge as the methods of choice for scaling up the sampling of populations, species and genomes, including currently understudied organismal groups and the genes or regulatory elements expected to matter most to species radiations.

摘要

理解物种辐射的驱动因素和限制是进化遗传学和分子生态学的一个关键目标,然而,由于将微观和宏观进化方法联系起来以研究多样化驱动因素存在众所周知的困难,关于这一主题的研究受到了阻碍。为了梳理分子生态学方法在研究辐射方面当前的研究差距、机遇和挑战,我们查阅了《分子生态学》杂志上的文献,并回顾了近期关于辐射的进化基因组学研究的一些备受瞩目的例子。我们发现,现有的辐射研究在分类群中分布极不均衡,许多具有重要生态意义且物种丰富的生物类群仍未得到充分研究,包括节肢动物、植物和真菌。大多数研究采用了适用于短或长进化时间尺度的分子方法,比如在前一种情况下使用微卫星或限制性位点关联DNA测序(RAD-seq),在后一种情况下使用细胞器DNA的传统扩增子测序。分子生态学研究在解决和解析分类群辐射群体中物种水平周围的模式和过程方面的潜力目前主要受到样本量以及与细胞器基因组相对的辐射核基因组信息匮乏的限制。基于我们的文献调查和个人经验,我们提出了未来几年可能的前进方向。我们探讨了全基因组测序(WGS)在辐射研究中的潜力和当前局限性。我们认为,全基因组测序和靶向(“捕获”)重测序将成为扩大种群、物种和基因组采样规模的首选方法,包括目前未得到充分研究的生物类群以及预计对物种辐射最为重要的基因或调控元件。

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