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首页> 外文期刊>FEMS Microbiology Ecology >Genetic diversity of symbiotic Paraburkholderia species isolated from nodules of Mimosa pudica (L.) and Phaseolus vulgaris (L.) grown in soils of the Brazilian Atlantic Forest (Mata Atlantica)
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Genetic diversity of symbiotic Paraburkholderia species isolated from nodules of Mimosa pudica (L.) and Phaseolus vulgaris (L.) grown in soils of the Brazilian Atlantic Forest (Mata Atlantica)

机译:从巴西大西洋大西洋森林(Mata Atlantica)的含羞草Pudica(L.)(L.)(L.)结节和寻常的Phoudolusulus(L.)分离的共生帕拉剑杆菌物种遗传多样性

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摘要

Some species of the genus Paraburkholderia that are able to nodulate and fix nitrogen in symbiosis with legumes are called beta-rhizobia and represent a group of ecological and biotechnological importance. We used Mimosa pudica and Phaseolus vulgaris to trap 427 rhizobial isolates from rhizospheric soil of Mimoseae trees in the Brazilian Atlantic Forest. Eighty-four representative strains were selected according to the 16S rRNA haplotypes and taxonomically characterized using a concatenated 16S rRNA-recA phylogeny. Most strains were assembled in the genus Paraburkholderia, including Paraburkholderia sabiae and Pa. nodosa. Mesorhizobium (alpha-rhizobia) and Cupriavidus (beta-rhizobia) were also isolated, but in smaller proportions. Multilocus sequence analysis and BOX-PCR analyses indicated that six clusters of Paraburkholderia represent potential new species. In the phylogenetic analysis of the nodC gene, the majority of the strains were positioned in the same groups as in the 16S rRNA-recA tree, indicative of stability and vertical inheritance, but we also identified horizontal transfer of nodC in Pa. sabiae. All alpha- and beta-rhizobial species were trapped by both legumes, although preferences of the host plants for specific rhizobial species have been observed.
机译:一些能够在与豆类中染色和修复氮的帕拉剑杆菌属的一些物种称为Beta-Rezobia,代表了一组生态和生物技术重要性。我们使用含羞草pudica和寻常的pumplyis从巴西大西洋森林中捕获427个无骨灰树的根茎土壤的根瘤菌土壤。根据16S rRNA单倍型选择八十四种代表菌株,并使用串联16S rRNA-RECA phylogy表征分类。大多数菌株组装在Paraburkowneria属中,包括Paraburkholderia Sabiae和Pa。诺顿。也分离了梅尔霍齐苏(alpha-Rhizobia)和Cupriavidus(Beta-Rhizobia),但较小的比例。多点序列分析和Box-PCR分析表明,六种Paraburkowneria集群代表了潜在的新物种。在NODC基因的系统发育分析中,大部分菌株在16S rRNA-RECA树中定位在相同的基团中,表明稳定性和垂直遗传,但我们还确定了PA的NODC的水平转移。萨比亚。所有植物捕获了所有α-和β-无曲目物种,尽管已经观察到宿主植物的宿主植物的偏好。

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