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Complex Evolutionary History of the Aeromonas veronii Group Revealed by Host Interaction and DNA Sequence Data

机译:寄主相互作用和DNA序列数据揭示了维氏气单胞菌群的复杂进化史。

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摘要

Aeromonas veronii biovar sobria, Aeromonas veronii biovar veronii, and Aeromonas allosaccharophila are a closely related group of organisms, the Aeromonas veronii Group, that inhabit a wide range of host animals as a symbiont or pathogen. In this study, the ability of various strains to colonize the medicinal leech as a model for beneficial symbiosis and to kill wax worm larvae as a model for virulence was determined. Isolates cultured from the leech out-competed other strains in the leech model, while most strains were virulent in the wax worms. Three housekeeping genes, recA, dnaJ and gyrB, the gene encoding chitinase, chiA, and four loci associated with the type three secretion system, ascV, ascFG, aexT, and aexU were sequenced. The phylogenetic reconstruction failed to produce one consensus tree that was compatible with most of the individual genes. The Approximately Unbiased test and the Genetic Algorithm for Recombination Detection both provided further support for differing evolutionary histories among this group of genes. Two contrasting tests detected recombination within aexU, ascFG, ascV, dnaJ, and gyrB but not in aexT or chiA. Quartet decomposition analysis indicated a complex recent evolutionary history for these strains with a high frequency of horizontal gene transfer between several but not among all strains. In this study we demonstrate that at least for some strains, horizontal gene transfer occurs at a sufficient frequency to blur the signal from vertically inherited genes, despite strains being adapted to distinct niches. Simply increasing the number of genes included in the analysis is unlikely to overcome this challenge in organisms that occupy multiple niches and can exchange DNA between strains specialized to different niches. Instead, the detection of genes critical in the adaptation to specific niches may help to reveal the physiological specialization of these strains.
机译:Veronii气单胞菌,Veronii气单胞菌和嗜异性嗜气单胞菌是密切相关的生物群,即Veronii气单胞菌群,它们以共生体或病原体的形式存在于多种宿主动物中。在这项研究中,确定了各种菌株在药用水ech中定殖作为有益共生模型的能力以及杀死蜡虫幼虫作为毒性模型的能力。在水culture模型中,从水ech培养的菌株胜过其他菌株,而大多数菌株在蜡虫中具有毒性。对三个管家基因recA,dnaJ和gyrB,编码几丁质酶,chiA的基因以及与三型分泌系统ascV,ascFG,aexT和aexU相关的四个基因座进行了测序。系统发育重建未能产生与大多数个体基因兼容的一棵共有树。近似无偏检验和用于重组检测的遗传算法都为这组基因之间不同的进化历史提供了进一步的支持。两项对比测试检测到aexU,ascFG,ascV,dnaJ和gyrB内部重组,而aexT或chiA中未重组。四方分解分析表明这些菌株最近有复杂的进化史,其中一些菌株之间但并非所有菌株之间都有很高的水平基因转移频率。在这项研究中,我们证明至少对于某些菌株,尽管菌株适应于不同的生态位,但水平基因转移发生的频率足以使垂直遗传基因的信号模糊。在占据多个生态位并且可以在专门针对不同生态位的菌株之间交换DNA的生物体中,仅增加分析中包含的基因的数量就不可能克服这一挑战。取而代之的是,检测对适应特定生态位至关重要的基因可能有助于揭示这些菌株的生理特异性。

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