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植物中转座元件增殖速率的系统发育测定:棉属中的反转录转座子copia和类LINE元件

Phylogenetic determination of the pace of transposable element proliferation in plants: copia and LINE-like elements in Gossypium.

作者信息

Hawkins Jennifer S, Hu Guanjing, Rapp Ryan A, Grafenberg Jessie L, Wendel Jonathan F

机构信息

Department of Ecology, Evolution and Organismal Biology, Iowa State University, Ames, IA 50011, USA.

出版信息

Genome. 2008 Jan;51(1):11-8. doi: 10.1139/g07-099.

Abstract

Transposable elements contribute significantly to plant genome evolution in myriad ways, ranging from local insertional mutations to global effects exerted on genome size through accumulation. Differential accumulation and deletion of transposable elements may profoundly affect genome size, even among members of the same genus. One example is that of Gossypium (cotton), where much of the 3-fold genome size variation is due to differential accumulation of one gypsy-like LTR retrotransposon, Gorge3. Copia and non-LTR LINE retrotransposons are also major components of the Gossypium genome, but unlike Gorge3, their extant copy numbers do not correlate with genome size. In the present study, we describe the nature and timing of transposition for copia and LINE retrotransposons in Gossypium. Our findings indicate that copia retrotransposons have been active in each lineage since divergence from a common ancestor, and that they have proliferated in a punctuated manner. However, the evolutionary history of LINEs contrasts markedly with that of the copia retrotransposons. Although LINEs have also been active in each lineage, they have accumulated in a stochastically regular manner, and phylogenetic analysis suggests that extant LINE populations in Gossypium are dominated by ancient insertions. Interestingly, the magnitude of transpositional bursts in each lineage corresponds directly with extant estimated copy number.

摘要

转座元件通过多种方式对植物基因组进化产生重大影响,从局部插入突变到因积累而对基因组大小产生的全局效应。转座元件的差异积累和缺失可能会深刻影响基因组大小,即使在同一属的成员中也是如此。一个例子是棉属(棉花),其3倍的基因组大小差异很大程度上是由于一种类gypsy LTR反转录转座子Gorge3的差异积累。Copia和非LTR LINE反转录转座子也是棉属基因组的主要组成部分,但与Gorge3不同,它们现存的拷贝数与基因组大小无关。在本研究中,我们描述了棉属中Copia和LINE反转录转座子转座的性质和时间。我们的研究结果表明,自从共同祖先分化以来,Copia反转录转座子在每个谱系中都很活跃,并且它们以间断的方式增殖。然而,LINEs的进化历史与Copia反转录转座子明显不同。虽然LINEs在每个谱系中也很活跃,但它们以随机规则的方式积累,系统发育分析表明,棉属中现存的LINE群体主要由古老的插入组成。有趣的是,每个谱系中转座爆发的程度与现存估计拷贝数直接相关。

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