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Horizontal gene transfer and its role in the emergence of new phenotypes

机译:水平基因转移及其在新表型的出现中的作用

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Introducing horizontal (or lateral) gene transfer (HGT) to first-year undergraduates used to be straightforward. A whistle-stop tour through the basic mechanisms of transformation, transduction and conjugation (with an honourable mention of homologous recombination) and descriptions of rough and smooth mutants of Streptococcus pneu-moniae, the life cycles of phages lambda and T4 and the sexual proclivities of the 'F factor was, until recently, little changed over the intervening years since their discovery. These processes (described in more detail below) also form the cornerstone of much of bacterial genetics, albeit from a predominantly Escherichia co/i-centric perspective. This year celebrates the sixtieth anniversary of Joshua Lederburg and Edward Tatum's groundbreaking discovery of sexual transfer in bacteria (Lederburg & Tatum, 1946), yet to many the concept of HGT as a driving force in evolution has only come of age with the advent of comparative genomics (Kurland, 2000), which has revealed that far more is involved in HGT than plasmid-mediated conjugation. This review begins by providing an overview of the significance of HGT, defined here as 'the acquisition and stable maintenance of foreign DNA into the genome of a recipient cell' and introduces the key mobile genetic elements (MGEs) that are the agents of HGT The roles of comparative genomics and bioinformatics and of the emerging field of metagenomics are discussed in relation to changes in perception of the significance of HGT in prokaryotic evolution, and the review concludes by highlighting key examples of recently recognized HGT-mediated phenotypes in the prokaryotic world.
机译:将水平(或横向)基因转移(HGT)引入曾经是直接的第一年的本科生。穿过转型,转导和缀合的基本机制(具有尊重同源重组)的基本机制和粗糙和平滑突变体的描述,噬菌体λ和T4的生命周期以及性倾向的描述自从他们发现以来,“F因子”直到最近,在中间的年龄上几年。这些过程(下面更详细地描述)也形成了大部分细菌遗传学的基石,尽管来自主要的大肠杆菌Co / I中心的观点。今年庆祝约书亚莱特堡和爱德华·塔图姆的突破性发现的六十周年(Lederburg&Tatum,1946),然而,随着Evolutive的驱动力,许多HGT的概念只有比较的出现基因组学(Kurland,2000),揭示了比质粒介导的缀合的远远超过HGT。本综述开始概述HGT的重要性,这里定义为“外来DNA的获取和稳定维持到受体细胞的基因组”并引入关键的移动遗传元素(JGE)是HGT的代理对比较基因组学和生物信息学的作用以及培养核苷酸在原核演变中的意义的变化的变化的讨论了,并通过突出最近公认的HGT介导的表型在原核世界中的关键例子进行了审查的结论。

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