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共生基因座与持家基因座的进化动力学比较:根瘤菌谱系遗传一致性的实例分析

Comparison of the evolutionary dynamics of symbiotic and housekeeping loci: a case for the genetic coherence of rhizobial lineages.

作者信息

Wernegreen J J, Riley M A

机构信息

Department of Ecology and Evolutionary Biology, Yale University, USA.

出版信息

Mol Biol Evol. 1999 Jan;16(1):98-113. doi: 10.1093/oxfordjournals.molbev.a026041.

Abstract

In prokaryotes, lateral gene transfer across chromosomal lineages may be mediated by plasmids, phages, transposable elements, and other accessory DNA elements. However, the importance of such transfer and the evolutionary forces that may restrict gene exchange remain largely unexplored in native settings. In this study, tests of phylogenetic congruence are employed to explore the range of horizontal transfer of symbiotic (sym) loci among distinct chromosomal lineages of native rhizobia, the nitrogen-fixing symbiont of legumes. Rhizobial strains isolated from nodules of several host plant genera were sequenced at three loci: symbiotic nodulation genes (nodB and nodC), the chromosomal housekeeping locus glutamine synthetase II (GSII), and a portion of the 16S rRNA gene. Molecular phylogenetic analysis shows that each locus generally subdivides strains into the same major groups, which correspond to the genera Rhizobium, Sinorhizobium, and Mesorhizobium. This broad phylogenetic congruence indicates a lack of lateral transfer across major chromosomal subdivisions, and it contrasts with previous studies of agricultural populations showing broad transfer of sym loci across divergent chromosomal lineages. A general correspondence of the three rhizobial genera with major legume groups suggests that host plant associations may be important in the differentiation of rhizobial nod and chromosomal loci and may restrict lateral transfer among strains. The second major result is a significant incongruence of nod and GSII phylogenies within rhizobial subdivisions, which strongly suggests horizontal transfer of nod genes among congenerics. This combined evidence for lateral gene transfer within, but not between, genetic subdivisions supports the view that rhizobial genera are "reproductively isolated" and diverge independently. Differences across rhizobial genera in the specificity of host associations imply that the evolutionary dynamics of the symbiosis vary considerably across lineages in native settings.

摘要

在原核生物中,跨染色体谱系的横向基因转移可能由质粒、噬菌体、转座元件和其他辅助DNA元件介导。然而,在自然环境中,这种转移的重要性以及可能限制基因交换的进化力量在很大程度上仍未得到探索。在本研究中,采用系统发育一致性测试来探究共生(sym)基因座在本地根瘤菌(豆科植物的固氮共生体)不同染色体谱系之间的水平转移范围。从几个宿主植物属的根瘤中分离出的根瘤菌菌株在三个基因座进行了测序:共生结瘤基因(nodB和nodC)、染色体管家基因座谷氨酰胺合成酶II(GSII)以及16S rRNA基因的一部分。分子系统发育分析表明,每个基因座通常将菌株细分为相同的主要类群,这些类群对应于根瘤菌属、中华根瘤菌属和中慢生根瘤菌属。这种广泛的系统发育一致性表明在主要染色体细分之间缺乏横向转移,这与之前对农业种群的研究形成对比,之前的研究表明共生基因座在不同的染色体谱系之间有广泛的转移。三个根瘤菌属与主要豆科植物类群的总体对应关系表明,宿主植物关联可能在根瘤菌结瘤和染色体基因座的分化中很重要,并且可能限制菌株之间的横向转移。第二个主要结果是根瘤菌细分内nod和GSII系统发育的显著不一致,这强烈表明nod基因在同属内发生了横向转移。这种在遗传细分内而非细分之间的横向基因转移的综合证据支持了根瘤菌属“生殖隔离”并独立分化的观点。根瘤菌属在宿主关联特异性上的差异意味着共生的进化动态在自然环境中的不同谱系间有很大差异。

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