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热球菌属中的水平基因转移

Horizontal Gene Transfer in Thermus spp.

机构信息

Centro de Biología Molecular Severo Ochoa, Universidad Autónoma de Madrid- Consejo Superior de Investigaciones Científicas, Calle Nicolás Cabrera no 1, 28049-Madrid, Spain Molecular Microbiology and Bioenergetics, Institute of Molecular Biosciences, Goethe University, Max- von-Laue-Str. 9, 60438 Frankfurt am Main, Germany Centro de Biología Molecular Severo Ochoa, Universidad Autónoma de Madrid- Consejo Superior de Investigaciones Científicas, Calle Nicolás Cabrera no 1, 28049-Madrid, Spain.

出版信息

Curr Issues Mol Biol. 2018;29:23-36. doi: 10.21775/cimb.029.023. Epub 2018 Apr 12.

Abstract

The small amount of genetic content in thermophiles generally limits their adaptability to environmental changes. In Thermus spp., very active horizontal gene transfer (HGT) mechanisms allow the rapid spread of strain-specific adaptive gene modules among the entire population. Constitutive expression of a rather particular and highly efficient DNA transport apparatus (DTA) is at the center of this HGT-mediated enhanced adaptability. The function of the DTA is dependent on the integrity and longevity of the extracellular DNA (eDNA) being transformed, which can be improved by the production of extracellular vesicles (EV) through lysis of a fraction of the population. The DTA must also contend with the recipient cell's defensive barriers, namely restriction enzymes, a panoply of CRISPR-Cas systems, and the argonaute-like protein TtAgo, which may be bypassed by transjugation, a new class of bidirectional transformation-dependent conjugation. Efficient transjugation depends on the presence of the ICETh1, an integrative and conjugative element which promotes simultaneous, generalized DNA transfer from several points in the genome. Transjugation shows preference for genes located within a megaplasmid replicon, where the main strain-specific adaptive modules are located. Contribution of transformation, vesicle-mediated eDNAs, and transjugation to HGT in this genus is discussed.

摘要

嗜热菌的遗传物质含量很少,这通常限制了它们对环境变化的适应能力。在 Thermus 属中,非常活跃的水平基因转移(HGT)机制允许菌株特异性适应性基因模块在整个种群中快速传播。一种相当特殊和高效的 DNA 转运装置(DTA)的组成型表达是这种 HGT 介导的增强适应性的核心。DTA 的功能取决于被转化的细胞外 DNA(eDNA)的完整性和寿命,通过部分细胞裂解产生细胞外囊泡(EV)可以提高 eDNA 的完整性和寿命。DTA 还必须与受体细胞的防御屏障作斗争,即限制酶、各种 CRISPR-Cas 系统和 Argonaute 样蛋白 TtAgo,它们可能通过转导(一种新的双向转化依赖的共轭类型)绕过。有效的转导依赖于 ICETh1 的存在,ICETh1 是一种整合和共轭元件,可促进基因组中几个点的同时、广泛的 DNA 转移。转导对位于大型质粒复制子内的基因表现出偏好,主要的菌株特异性适应性模块位于该位置。本文讨论了转化、囊泡介导的 eDNA 和转导对该属 HGT 的贡献。

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