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真菌中的水平基因转移。

Horizontal gene transfer in fungi.

机构信息

Genome Evolution Laboratory, Department of Biology, The National University of Ireland Maynooth, Maynooth, Ireland.

出版信息

FEMS Microbiol Lett. 2012 Apr;329(1):1-8. doi: 10.1111/j.1574-6968.2011.02465.x. Epub 2011 Dec 15.

Abstract

Horizontal gene transfer (HGT) is frequently observed in prokaryotes and until recently was assumed to be of limited importance to eukaryotes. However, there is an increasing body of evidence to suggest that HGT is an important mechanism in eukaryotic genome evolution, particularly in unicellular organisms. The transfer of individual genes, gene clusters or entire chromosomes can have significant impacts on niche specification, disease emergence or shift in metabolic capabilities. In terms of genomic sequencing, the fungal kingdom is one of the most densely sampled eukaryotic lineages and is at the forefront of eukaryote comparative genomics and enables us to use fungi to study eukaryotic evolutionary mechanisms including HGT. This review describes the bioinformatics-based methodologies commonly used to locate HGT in fungal genomes and investigates the possible mechanisms involved in transferring genetic material laterally into fungal species. I will highlight a number of fungal HGT events and discuss the impact they have played on fungal evolution and discuss the implications HGT may have on the fungal tree of life.

摘要

水平基因转移 (HGT) 在原核生物中经常发生,直到最近人们还认为它对真核生物的重要性有限。然而,越来越多的证据表明 HGT 是真核生物基因组进化的一个重要机制,特别是在单细胞生物中。单个基因、基因簇或整个染色体的转移可能会对生态位特化、疾病出现或代谢能力的转变产生重大影响。在基因组测序方面,真菌界是被采样最密集的真核生物谱系之一,处于真核生物比较基因组学的前沿,使我们能够利用真菌来研究包括 HGT 在内的真核生物进化机制。本综述描述了常用于在真菌基因组中定位 HGT 的基于生物信息学的方法,并研究了将遗传物质横向转移到真菌物种中涉及的可能机制。我将重点介绍一些真菌 HGT 事件,并讨论它们对真菌进化的影响,以及 HGT 可能对真菌生命之树产生的影响。

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