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The Obscure World of Integrative and Mobilizable Elements Highly Widespread Elements that Pirate Bacterial Conjugative Systems

机译:整合和可移动元素的模糊世界盗版细菌共轭系统的高度普及元素

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摘要

Conjugation is a key mechanism of bacterial evolution that involves mobile genetic elements. Recent findings indicated that the main actors of conjugative transfer are not the well-known conjugative or mobilizable plasmids but are the integrated elements. This paper reviews current knowledge on “integrative and mobilizable elements” (IMEs) that have recently been shown to be highly diverse and highly widespread but are still rarely described. IMEs encode their own excision and integration and use the conjugation machinery of unrelated co-resident conjugative element for their own transfer. Recent studies revealed a much more complex and much more diverse lifecycle than initially thought. Besides their main transmission as integrated elements, IMEs probably use plasmid-like strategies to ensure their maintenance after excision. Their interaction with conjugative elements reveals not only harmless hitchhikers but also hunters that use conjugative elements as target for their integration or harmful parasites that subvert the conjugative apparatus of incoming elements to invade cells that harbor them. IMEs carry genes conferring various functions, such as resistance to antibiotics, that can enhance the fitness of their hosts and that contribute to their maintenance in bacterial populations. Taken as a whole, IMEs are probably major contributors to bacterial evolution.
机译:结合是细菌进化的关键机制,涉及移动遗传元件。最近的发现表明,共轭转移的主要参与者不是众所周知的共轭或可动员质粒,而是整合元件。本文回顾了有关“整合和可动员要素”(IME)的当前知识,这些知识最近被证明具有高度的多样性和高度的普遍性,但仍很少被描述。 IME对自己的切除和整合进行编码,并使用无关的共居共轭元素的共轭机制进行自己的转移。最近的研究表明,生命周期比最初想象的要复杂得多。除了作为整合要素的主要传播途径外,IME还可能使用质粒样策略来确保切除后的维持。它们与共轭元素的相互作用不仅揭示了无害的搭便车者,而且还揭示了使用共轭元素作为其整合目标的猎人或有害的寄生虫,这些寄生虫颠覆了进入元素的共轭装置,入侵了拥有它们的细胞。 IME携带赋予各种功能的基因,例如对抗生素的抗性,可以增强宿主的适应性并有助于其在细菌种群中的维持。从整体上看,IME可能是细菌进化的主要贡献者。

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