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什么是物种形成?

What Is Speciation?

作者信息

Shapiro B Jesse, Leducq Jean-Baptiste, Mallet James

机构信息

Département de sciences biologiques, Université de Montréal, Montréal, Quebec, Canada.

Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, Massachusetts, United States of America.

出版信息

PLoS Genet. 2016 Mar 31;12(3):e1005860. doi: 10.1371/journal.pgen.1005860. eCollection 2016 Mar.

Abstract

Concepts and definitions of species have been debated by generations of biologists and remain controversial. Microbes pose a particular challenge because of their genetic diversity, asexual reproduction, and often promiscuous horizontal gene transfer (HGT). However, microbes also present an opportunity to study and understand speciation because of their rapid evolution, both in nature and in the lab, and small, easily sequenced genomes. Here, we review how microbial population genomics has enabled us to catch speciation "in the act" and how the results have challenged and enriched our concepts of species, with implications for all domains of life. We describe how recombination (including HGT and introgression) has shaped the genomes of nascent microbial, animal, and plant species and argue for a prominent role of natural selection in initiating and maintaining speciation. We ask how universal is the process of speciation across the tree of life, and what lessons can be drawn from microbes? Comparative genomics showing the extent of HGT in natural populations certainly jeopardizes the relevance of vertical descent (i.e., the species tree) in speciation. Nevertheless, we conclude that species do indeed exist as clusters of genetic and ecological similarity and that speciation is driven primarily by natural selection, regardless of the balance between horizontal and vertical descent.

摘要

物种的概念和定义已经历经几代生物学家的讨论,至今仍存在争议。微生物因其遗传多样性、无性繁殖以及频繁的水平基因转移(HGT)而构成了特殊的挑战。然而,微生物也为研究和理解物种形成提供了契机,这是因为它们在自然环境和实验室中都能快速进化,并且基因组小、易于测序。在此,我们综述微生物群体基因组学如何使我们能够“实时捕捉”物种形成过程,以及这些结果如何挑战并丰富了我们的物种概念,这对生命的所有领域都具有启示意义。我们描述了重组(包括水平基因转移和基因渗入)如何塑造了新生微生物、动物和植物物种的基因组,并论证了自然选择在启动和维持物种形成过程中的重要作用。我们探讨物种形成过程在整个生命之树中具有多大的普遍性,以及能从微生物身上汲取哪些经验教训?比较基因组学揭示了自然种群中水平基因转移的程度,这无疑危及了物种形成中垂直遗传(即物种树)的相关性。尽管如此,我们得出结论,物种确实作为遗传和生态相似性的集群而存在,并且物种形成主要由自然选择驱动,无论水平遗传和垂直遗传之间的平衡如何。

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