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Phylogenetic Analysis of the Incidence of lux Gene Horizontal Transfer in Vibrionaceae

机译:弧菌科lux基因水平转移发生的系统发育分析

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摘要

Horizontal gene transfer (HGT) is thought to occur frequently in bacteria in nature and to play an important role in bacterial evolution, contributing to the formation of new species. To gain insight into the frequency of HGT in Vibrionaceae and its possible impact on speciation, we assessed the incidence of interspecies transfer of the lux genes (luxCDABEG), which encode proteins involved in luminescence, a distinctive phenotype. Three hundred three luminous strains, most of which were recently isolated from nature and which represent 11 Aliivibrio, Photobacterium, and Vibrio species, were screened for incongruence of phylogenies based on a representative housekeeping gene (gyrB or pyrH) and a representative lux gene (luxA). Strains exhibiting incongruence were then subjected to detailed phylogenetic analysis of horizontal transfer by using multiple housekeeping genes (gyrB, recA, and pyrH) and multiple lux genes (luxCDABEG). In nearly all cases, housekeeping gene and lux gene phylogenies were congruent, and there was no instance in which the lux genes of one luminous species had replaced the lux genes of another luminous species. Therefore, the lux genes are predominantly vertically inherited in Vibrionaceae. The few exceptions to this pattern of congruence were as follows: (i) the lux genes of the only known luminous strain of Vibrio vulnificus, VVL1 (ATCC 43382), were evolutionarily closely related to the lux genes of Vibrio harveyi; (ii) the lux genes of two luminous strains of Vibrio chagasii, 21N-12 and SB-52, were closely related to those of V. harveyi and Vibrio splendidus, respectively; (iii) the lux genes of a luminous strain of Photobacterium damselae, BT-6, were closely related to the lux genes of the lux-rib2 operon of Photobacterium leiognathi; and (iv) a strain of the luminous bacterium Photobacterium mandapamensis was found to be merodiploid for the lux genes, and the second set of lux genes was closely related to the lux genes of the lux-rib2 operon of P. leiognathi. In none of these cases of apparent HGT, however, did acquisition of the lux genes correlate with phylogenetic divergence of the recipient strain from other members of its species. The results indicate that horizontal transfer of the lux genes in nature is rare and that horizontal acquisition of the lux genes apparently has not contributed to speciation in recipient taxa.
机译:人们认为水平基因转移(HGT)在自然界的细菌中经常发生,并且在细菌进化中起重要作用,有助于形成新物种。为了深入了解弧菌科中HGT的频率及其对物种形成的可能影响,我们评估了lux基因(luxCDABEG)的种间转移发生率,该基因编码与发光有关的蛋白质(一种独特的表型)。根据代表性的管家基因(gyrB或pyrH)和代表性的lux基因(luxA),筛选了303个发光菌株,其中大多数是最近从自然界分离的,它们代表11种Aliivibrio,Photobacterium和Vibrio菌种的系统发育不一致性。 )。然后通过使用多个管家基因(gyrB,recA和pyrH)和多个lux基因(luxCDABEG)对表现出不一致的菌株进行水平转移的详细系统发育分析。在几乎所有情况下,管家基因和lux基因的系统发育是一致的,并且没有一种实例将一种发光物种的 lux 基因替换为另一种发光物种的 lux 基因种类。因此, lux 基因主要是在弧菌科中垂直遗传的。这种一致模式的几个例外如下:(i)唯一已知的弧菌弧菌VVL1(ATCC 43382)的发光株的 lux 基因是进化的与哈维弧菌 lux 基因密切相关; (ii)恰克弧菌的两个发光菌株21N-12和SB-52的 lux 基因与 V密切相关。 harveyi Splendidus 。 (iii)发光细菌damselae BT-6的 lux 基因与 lux 基因密切相关 Leiognathi 的> lux - rib 2操纵子; (iv)发现发光细菌 mandapamensis 的菌株是 lux 基因的类命倍体,以及第二组 lux 基因与 P的 lux - rib 2操纵子的 lux 基因密切相关。 leiognathi 。然而,在所有这些明显的HGT病例中, lux 基因的获得与受体菌株与该物种其他成员的系统发育差异没有关联。结果表明, lux 基因在自然界中的水平转移很少见,并且 lux 基因的水平获取显然没有促进受体类群的物种形成。

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