1 Centre for Rhizobium Studies, Murdoch University, Western Australia, Australia;
2 Dept. of Molecular, Cell and Developmental Biology, UCLA, Los Angeles, CA, U.S.A.;
Mol Plant Microbe Interact. 2016 Aug;29(8):609-19. doi: 10.1094/MPMI-05-16-0091-R. Epub 2016 Jun 30.
Genome analysis of fourteen mimosoid and four papilionoid beta-rhizobia together with fourteen reference alpha-rhizobia for both nodulation (nod) and nitrogen-fixing (nif/fix) genes has shown phylogenetic congruence between 16S rRNA/MLSA (combined 16S rRNA gene sequencing and multilocus sequence analysis) and nif/fix genes, indicating a free-living diazotrophic ancestry of the beta-rhizobia. However, deeper genomic analysis revealed a complex symbiosis acquisition history in the beta-rhizobia that clearly separates the mimosoid and papilionoid nodulating groups. Mimosoid-nodulating beta-rhizobia have nod genes tightly clustered in the nodBCIJHASU operon, whereas papilionoid-nodulating Burkholderia have nodUSDABC and nodIJ genes, although their arrangement is not canonical because the nod genes are subdivided by the insertion of nif and other genes. Furthermore, the papilionoid Burkholderia spp. contain duplications of several nod and nif genes. The Burkholderia nifHDKEN and fixABC genes are very closely related to those found in free-living diazotrophs. In contrast, nifA is highly divergent between both groups, but the papilionoid species nifA is more similar to alpha-rhizobia nifA than to other groups. Surprisingly, for all Burkholderia, the fixNOQP and fixGHIS genes required for cbb3 cytochrome oxidase production and assembly are missing. In contrast, symbiotic Cupriavidus strains have fixNOQPGHIS genes, revealing a divergence in the evolution of two distinct electron transport chains required for nitrogen fixation within the beta-rhizobia.
对 14 种含羞草和 4 种豆科根瘤菌以及 14 种参考α-根瘤菌的基因组分析表明,16S rRNA/MLSA(结合 16S rRNA 基因测序和多位点序列分析)和 nif/fix 基因之间存在系统发育一致性,表明β-根瘤菌具有自由生活的固氮能力。然而,更深入的基因组分析揭示了β-根瘤菌复杂的共生获取历史,这清楚地将含羞草和豆科结瘤组分开。含羞草结瘤的β-根瘤菌的 nod 基因紧密聚集在 nodBCIJHASU 操纵子中,而豆科 Burkholderia 的 nodUSDABC 和 nodIJ 基因,尽管它们的排列不是典型的,因为 nod 基因被插入 nif 和其他基因所细分。此外,豆科 Burkholderia spp. 包含几个 nod 和 nif 基因的重复。Burkholderia 的 nifHDKEN 和 fixABC 基因与自由生活的固氮生物中发现的基因非常相似。相比之下,两组的 nifA 高度不同,但豆科种的 nifA 与α-根瘤菌的 nifA 更相似,而与其他组的 nifA 不相似。令人惊讶的是,对于所有的 Burkholderia ,产生和组装 cbb3 细胞色素氧化酶所需的 fixNOQP 和 fixGHIS 基因缺失。相比之下,共生的 Cupriavidus 菌株具有 fixNOQPGHIS 基因,这揭示了在β-根瘤菌中固氮所需的两种不同电子传递链的进化分歧。