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β-变形菌纲细菌进行的豆科植物共生固氮在自然界中广泛存在。

Legume symbiotic nitrogen fixation by beta-proteobacteria is widespread in nature.

作者信息

Chen Wen-Ming, Moulin Lionel, Bontemps Cyril, Vandamme Peter, Béna Gilles, Boivin-Masson Catherine

机构信息

Laboratory of Microbiology, Department of Seafood Science, National Kaohsiung Institute of Marine Technology, Kaohsiung City 811, Taiwan.

出版信息

J Bacteriol. 2003 Dec;185(24):7266-72. doi: 10.1128/JB.185.24.7266-7272.2003.

Abstract

Following the initial discovery of two legume-nodulating Burkholderia strains (L. Moulin, A. Munive, B. Dreyfus, and C. Boivin-Masson, Nature 411:948-950, 2001), we identified as nitrogen-fixing legume symbionts at least 50 different strains of Burkholderia caribensis and Ralstonia taiwanensis, all belonging to the beta-subclass of proteobacteria, thus extending the phylogenetic diversity of the rhizobia. R. taiwanensis was found to represent 93% of the Mimosa isolates in Taiwan, indicating that beta-proteobacteria can be the specific symbionts of a legume. The nod genes of rhizobial beta-proteobacteria (beta-rhizobia) are very similar to those of rhizobia from the alpha-subclass (alpha-rhizobia), strongly supporting the hypothesis of the unique origin of common nod genes. The beta-rhizobial nod genes are located on a 0.5-Mb plasmid, together with the nifH gene, in R. taiwanensis and Burkholderia phymatum. Phylogenetic analysis of available nodA gene sequences clustered beta-rhizobial sequences in two nodA lineages intertwined with alpha-rhizobial sequences. On the other hand, the beta-rhizobia were grouped with free-living nitrogen-fixing beta-proteobacteria on the basis of the nifH phylogenetic tree. These findings suggest that beta-rhizobia evolved from diazotrophs through multiple lateral nod gene transfers.

摘要

在最初发现两株能使豆科植物结瘤的伯克霍尔德氏菌菌株之后(L. 穆兰、A. 穆尼夫、B. 德雷富斯和C. 布瓦万 - 马森,《自然》411:948 - 950,2001),我们鉴定出至少50种不同的加勒比伯克霍尔德氏菌和台湾嗜根军团菌菌株为固氮豆科植物共生菌,它们都属于变形菌纲的β亚纲,从而扩展了根瘤菌的系统发育多样性。发现台湾嗜根军团菌占台湾含羞草分离株的93%,这表明β - 变形菌可以是豆科植物的特定共生菌。根瘤菌β - 变形菌(β - 根瘤菌)的nod基因与α亚纲根瘤菌(α - 根瘤菌)的nod基因非常相似,有力地支持了共同nod基因起源独特的假说。在台湾嗜根军团菌和栖植物伯克霍尔德氏菌中,β - 根瘤菌的nod基因与nifH基因一起位于一个0.5 Mb的质粒上。对现有nodA基因序列的系统发育分析将β - 根瘤菌序列聚集在两个与α - 根瘤菌序列交织的nodA谱系中。另一方面,基于nifH系统发育树,β - 根瘤菌与自由生活的固氮β - 变形菌归为一类。这些发现表明β - 根瘤菌是通过多次侧向nod基因转移从固氮菌进化而来的。

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