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全基因组水平上水平基因转移障碍的实验测定

Genome-wide experimental determination of barriers to horizontal gene transfer.

作者信息

Sorek Rotem, Zhu Yiwen, Creevey Christopher J, Francino M Pilar, Bork Peer, Rubin Edward M

机构信息

Department of Energy, Joint Genome Institute, 2800 Mitchell Drive, Walnut Creek, CA 94598, USA.

出版信息

Science. 2007 Nov 30;318(5855):1449-52. doi: 10.1126/science.1147112. Epub 2007 Oct 18.

Abstract

Horizontal gene transfer, in which genetic material is transferred from the genome of one organism to that of another, has been investigated in microbial species mainly through computational sequence analyses. To address the lack of experimental data, we studied the attempted movement of 246,045 genes from 79 prokaryotic genomes into Escherichia coli and identified genes that consistently fail to transfer. We studied the mechanisms underlying transfer inhibition by placing coding regions from different species under the control of inducible promoters. Our data suggest that toxicity to the host inhibited transfer regardless of the species of origin and that increased gene dosage and associated increased expression may be a predominant cause for transfer failure. Although these experimental studies examined transfer solely into E. coli, a computational analysis of gene-transfer rates across available bacterial and archaeal genomes supports that the barriers observed in our study are general across the tree of life.

摘要

水平基因转移是指遗传物质从一个生物体的基因组转移到另一个生物体的基因组,主要通过计算序列分析对微生物物种进行了研究。为了解决实验数据不足的问题,我们研究了从79个原核生物基因组中尝试转移246,045个基因到大肠杆菌中的情况,并确定了始终无法转移的基因。我们通过将来自不同物种的编码区置于可诱导启动子的控制下,研究了转移抑制的潜在机制。我们的数据表明,对宿主的毒性会抑制转移,而不论基因的起源物种如何,基因剂量增加和相关的表达增加可能是转移失败的主要原因。尽管这些实验研究仅考察了向大肠杆菌中的转移,但对现有细菌和古菌基因组的基因转移率进行的计算分析支持了我们研究中观察到的障碍在整个生命树中是普遍存在的。

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