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在埃塞俄比亚中南部的土壤中存在具有遗传多样性的豌豆和兵豆根瘤菌。

Genetically diverse lentil- and faba bean-nodulating rhizobia are present in soils across Central and Southern Ethiopia.

机构信息

Institute of Biotechnology, Addis Ababa University, Ethiopia.

Ecosystems and Environment Research Programme, Faculty of Biological and Environmental Sciences and Helsinki Institute of Sustainability Science (HELSUS), University of Helsinki, Helsinki, Finland.

出版信息

FEMS Microbiol Ecol. 2020 Mar 1;96(3). doi: 10.1093/femsec/fiaa015.

Abstract

In total 196 bacterial isolates were obtained from root nodules of lentil (Lens culinaris) and faba bean (Vicia faba) grown on soil samples collected from 10 different sites in central and southern parts of Ethiopia. All isolates were identified as members of the genus Rhizobium by using recA gene sequence analysis. In the recA phylogenetic tree 195 rhizobial strains were classified into nine genospecies. The phylogeny of symbiotic genes nodC and nifH revealed five and six distinct groups respectively, largely dominated by symbiovar viciae. A multivariate analysis showed that environmental variables of the sampling sites considered in this study had more effect on the distribution and composition of the genospecies than the host legumes of the strains. Twenty representative strains, selected based on their isolation site, host plant and nodC group, were able to nodulate all lentil, faba bean, field pea (Pisum abyssinicum) and grass pea (Lathyrus sativus) plants in a greenhouse test in axenic conditions. The majority of the rhizobial strains were effective nitrogen-fixing symbionts for all tested legumes, indicating their potential to serve as broad host-range inoculants in agriculture. The present work suggests the presence of taxonomically and symbiotically diverse rhizobial species for legumes in the Viciae tribe in Ethiopia.

摘要

从埃塞俄比亚中部和南部 10 个不同地点采集的土壤样本中种植的兵豆(Lens culinaris)和蚕豆(Vicia faba)的根瘤中获得了总共 196 株细菌分离株。所有分离株均通过 recA 基因序列分析鉴定为根瘤菌属的成员。在 recA 系统发育树中,195 株根瘤菌株被分为 9 个种。共生基因 nodC 和 nifH 的系统发育显示出分别有五个和六个不同的组,主要由共生体 viciae 主导。多元分析表明,本研究中考虑的采样点的环境变量对种的分布和组成的影响大于菌株的宿主豆科植物。根据其分离地点、宿主植物和 nodC 组选择了 20 株代表性菌株,在无菌条件下的温室试验中能够使所有兵豆、蚕豆、野豌豆(Pisum abyssinicum)和兵豆(Lathyrus sativus)结瘤。大多数根瘤菌株是所有测试豆科植物的有效固氮共生体,表明它们有可能作为农业中广泛宿主范围的接种剂。本研究表明,埃塞俄比亚野豌豆族中存在豆科植物的分类和共生多样性的根瘤菌物种。

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