转座元件在物种形成中的作用。
The Role of Transposable Elements in Speciation.
作者信息
Serrato-Capuchina Antonio, Matute Daniel R
机构信息
Biology Department, Genome Sciences Building, University of North Carolina, Chapel Hill, NC 27514, USA.
出版信息
Genes (Basel). 2018 May 15;9(5):254. doi: 10.3390/genes9050254.
Understanding the phenotypic and molecular mechanisms that contribute to genetic diversity between and within species is fundamental in studying the evolution of species. In particular, identifying the interspecific differences that lead to the reduction or even cessation of gene flow between nascent species is one of the main goals of speciation genetic research. Transposable elements (TEs) are DNA sequences with the ability to move within genomes. TEs are ubiquitous throughout eukaryotic genomes and have been shown to alter regulatory networks, gene expression, and to rearrange genomes as a result of their transposition. However, no systematic effort has evaluated the role of TEs in speciation. We compiled the evidence for TEs as potential causes of reproductive isolation across a diversity of taxa. We find that TEs are often associated with hybrid defects that might preclude the fusion between species, but that the involvement of TEs in other barriers to gene flow different from postzygotic isolation is still relatively unknown. Finally, we list a series of guides and research avenues to disentangle the effects of TEs on the origin of new species.
了解导致物种间和物种内遗传多样性的表型和分子机制是研究物种进化的基础。特别是,识别导致新物种间基因流动减少甚至停止的种间差异是物种形成遗传学研究的主要目标之一。转座元件(TEs)是能够在基因组内移动的DNA序列。TEs在整个真核生物基因组中普遍存在,并已显示出由于其转座而改变调控网络、基因表达以及重排基因组。然而,尚未有系统的研究评估TEs在物种形成中的作用。我们收集了TEs作为不同分类群中生殖隔离潜在原因的证据。我们发现TEs通常与可能阻止物种间融合的杂种缺陷相关,但TEs在不同于合子后隔离的其他基因流动障碍中的作用仍相对未知。最后,我们列出了一系列指南和研究途径,以厘清TEs对新物种起源的影响。
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