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基因组时代的染色体物种形成:解开岩袋鼠的系统发育进化

Chromosomal Speciation in the Genomics Era: Disentangling Phylogenetic Evolution of Rock-wallabies.

作者信息

Potter Sally, Bragg Jason G, Blom Mozes P K, Deakin Janine E, Kirkpatrick Mark, Eldridge Mark D B, Moritz Craig

机构信息

Research School of Biology, Australian National University, ActonACT, Australia; Australian Museum Research Institute, Australian Museum, SydneyNSW, Australia.

National Herbarium of New South Wales, The Royal Botanic Gardens and Domain Trust, Sydney NSW, Australia.

出版信息

Front Genet. 2017 Feb 10;8:10. doi: 10.3389/fgene.2017.00010. eCollection 2017.

Abstract

The association of chromosome rearrangements (CRs) with speciation is well established, and there is a long history of theory and evidence relating to "chromosomal speciation." Genomic sequencing has the potential to provide new insights into how reorganization of genome structure promotes divergence, and in model systems has demonstrated reduced gene flow in rearranged segments. However, there are limits to what we can understand from a small number of model systems, which each only tell us about one episode of chromosomal speciation. Progressing from patterns of association between chromosome (and genic) change, to understanding processes of speciation requires both comparative studies across diverse systems and integration of genome-scale sequence comparisons with other lines of evidence. Here, we showcase a promising example of chromosomal speciation in a non-model organism, the endemic Australian marsupial genus . We present initial phylogenetic results from exon-capture that resolve a history of divergence associated with extensive and repeated CRs. Yet it remains challenging to disentangle gene tree heterogeneity caused by recent divergence and gene flow in this and other such recent radiations. We outline a way forward for better integration of comparative genomic sequence data with evidence from molecular cytogenetics, and analyses of shifts in the recombination landscape and potential disruption of meiotic segregation and epigenetic programming. In all likelihood, CRs impact multiple cellular processes and these effects need to be considered together, along with effects of genic divergence. Understanding the effects of CRs together with genic divergence will require development of more integrative theory and inference methods. Together, new data and analysis tools will combine to shed light on long standing questions of how chromosome and genic divergence promote speciation.

摘要

染色体重排(CRs)与物种形成之间的关联已得到充分证实,并且存在关于“染色体物种形成”的悠久理论和证据历史。基因组测序有潜力为基因组结构重组如何促进分化提供新的见解,并且在模型系统中已证明重排片段中的基因流减少。然而,从少数模型系统中我们能理解的内容是有限的,每个模型系统仅能告诉我们关于一次染色体物种形成事件。从染色体(和基因)变化之间的关联模式,推进到理解物种形成过程,既需要跨不同系统的比较研究,也需要将基因组规模的序列比较与其他证据线进行整合。在这里,我们展示了一种非模式生物——澳大利亚特有有袋类属中染色体物种形成的一个有前景的例子。我们展示了外显子捕获的初步系统发育结果,这些结果解析了与广泛且重复的CRs相关的分化历史。然而,在这个以及其他此类近期辐射事件中,要理清由近期分化和基因流导致的基因树异质性仍然具有挑战性。我们概述了一条将比较基因组序列数据与分子细胞遗传学证据、重组景观变化分析以及减数分裂分离和表观遗传编程潜在破坏分析更好地整合的前进道路。很有可能,CRs会影响多个细胞过程,这些影响需要与基因分化的影响一起综合考虑。理解CRs与基因分化的影响将需要发展更综合的理论和推断方法。新的数据和分析工具将共同作用,以阐明关于染色体和基因分化如何促进物种形成这一长期存在的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebce/5301020/41b5c6262734/fgene-08-00010-g001.jpg

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