Evolutionary history of LTR retrotransposon chromodomains in plants.

International journal of plant genomics Pub Date : 2012-01-01 Epub Date: 2012-04-29 DOI:10.1155/2012/874743
Anton Novikov, Georgiy Smyshlyaev, Olga Novikova
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引用次数: 20

Abstract

Chromodomain-containing LTR retrotransposons are one of the most successful groups of mobile elements in plant genomes. Previously, we demonstrated that two types of chromodomains (CHDs) are carried by plant LTR retrotransposons. Chromodomains from group I (CHD_I) were detected only in Tcn1-like LTR retrotransposons from nonseed plants such as mosses (including the model moss species Physcomitrella) and lycophytes (the Selaginella species). LTR retrotransposon chromodomains from group II (CHD_II) have been described from a wide range of higher plants. In the present study, we performed computer-based mining of plant LTR retrotransposon CHDs from diverse plants with an emphasis on spike-moss Selaginella. Our extended comparative and phylogenetic analysis demonstrated that two types of CHDs are present only in the Selaginella genome, which puts this species in a unique position among plants. It appears that a transition from CHD_I to CHD_II and further diversification occurred in the evolutionary history of plant LTR retrotransposons at approximately 400 MYA and most probably was associated with the evolution of chromatin organization.

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植物LTR反转录转座子染色体域的进化历史。
LTR逆转录转座子是植物基因组中最成功的一类可移动元件。先前,我们证明了植物LTR反转录转座子携带两种类型的色域(CHDs)。来自I类(CHD_I)的染色体结构域仅在非种子植物,如苔藓(包括模式苔藓种小Physcomitrella)和石松(Selaginella种)的tcn1样LTR反转录转座子中检测到。LTR反转录转座子色域来自II组(CHD_II)已经在广泛的高等植物中被描述。在本研究中,我们对不同植物的LTR反转录转座子CHDs进行了计算机挖掘,重点研究了刺藓卷柏草。我们的扩展比较和系统发育分析表明,两种类型的CHDs仅存在于卷柏属基因组中,这使得该物种在植物中处于独特的地位。从CHD_I到CHD_II的转变和进一步的多样化似乎发生在植物LTR反转录转座子的进化史上,大约在400 MYA,很可能与染色质组织的进化有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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