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真菌(菌物界)中的重复DNA元件:对基因组结构和进化的影响

Repetitive DNA elements in fungi (Mycota): impact on genomic architecture and evolution.

作者信息

Wöstemeyer Johannes, Kreibich Anne

机构信息

FSU Jena, Institut für Mikrobiologie, Lehrstuhl für Allgemeine Mikrobiologie und Mikrobengeneti, Neugasse 24, 07743 Jena, Germany.

出版信息

Curr Genet. 2002 Jul;41(4):189-98. doi: 10.1007/s00294-002-0306-y. Epub 2002 Jun 21.

Abstract

Repetitive DNA elements, microsatellites or simple repeats, minisatellites, mobile elements that transpose at the level of DNA, retrotransposons and various derivatives thereof are ubiquitous constituents of all fungal genomes. Many of these elements, especially the different types of transposon, have been cloned and characterised at the sequence level. Their biological role, however, has not yet been sufficiently elucidated. We are far from understanding the selection mechanisms that tend to conserve repeated DNA at defined loci. There is also little insight into the mechanisms that provide the balance between spreading repetitive elements within genomes and control of their copy number. Depending on the fungal group, this balance can be stabilised at different levels. Asco- and basidiomycetes rarely contain more than 5% repetitive DNA, whereas the phylogenetically older division Zygomycota is characterised by typically more than 30%. The effects of repetitive DNAs on the expression of adjacent genes are only rarely understood and their role for genomic plasticity on an evolutionary time scale is still especially enigmatic. This survey summarises the main characteristics of well studied experimental systems and intends to define important open questions for stimulating future research.

摘要

重复DNA元件、微卫星或简单重复序列、小卫星、在DNA水平上转座的移动元件、逆转座子及其各种衍生物是所有真菌基因组中普遍存在的组成部分。其中许多元件,特别是不同类型的转座子,已在序列水平上被克隆和表征。然而,它们的生物学作用尚未得到充分阐明。我们远未理解倾向于在特定位点保守重复DNA的选择机制。对于在基因组内传播重复元件和控制其拷贝数之间提供平衡的机制也知之甚少。根据真菌类群的不同,这种平衡可以在不同水平上稳定下来。子囊菌门和担子菌门很少含有超过5%的重复DNA,而系统发育上较古老的接合菌门的特征是通常超过30%。重复DNA对相邻基因表达的影响很少被了解,它们在进化时间尺度上对基因组可塑性的作用仍然特别神秘。本综述总结了经过充分研究的实验系统的主要特征,并旨在确定重要的开放性问题,以刺激未来的研究。

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