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Diversity of rhizobia and interactions among the host legumes and rhizobial genotypes in an agricultural-forestry ecosystem

机译:农林生态系统中根瘤菌的多样性以及宿主豆类和根瘤菌基因型之间的相互作用

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摘要

To investigate the diversity of rhizobia and interactions among the host legumes and rhizobial genotypes in the same habitat, a total of 97 rhizobial strains isolated from nine legume species grown in an agricultural-forestry ecosystem were identified into seven genomic species and 12 symbiotic genotypes within the genera Bradyrhizobium, Mesorhizobium, Rhizobium and Sinorhizobium based upon analyses of genomic DNA regions and symbiotic genes. The results evidenced that the symbiotic genotypes of rhizobia were consistent with their hosts of origin; revealed that vertical transfer was the main mechanism in rhizobia to maintain the symbiotic genes but lateral transfer of symbiotic genes might have happened between the closely related rhizobial species; suggested the existence of co-distribution and co-evolution among the legume hosts and compatible rhizobia. All of these data demonstrated that the biogeography of rhizobia was a result of interactions among the host legumes, bacterial genomic backgrounds and environments.
机译:为了研究同一生境中根瘤菌的多样性以及宿主豆科植物和根瘤菌基因型之间的相互作用,从农林生态系统中生长的9个豆科植物物种中分离出的共97株根瘤菌菌株被鉴定为7种基因组物种和12种共生基因型。根据基因组DNA区域和共生基因的分析,确定了Bradyrhizobium,Mesorhizobium,Rhizobium和Sinorhizobium属。结果证明,根瘤菌的共生基因型与其来源宿主一致。揭示了垂直转移是根瘤菌维持共生基因的主要机制,但在密切相关的根瘤菌之间可能发生了共生基因的横向转移。豆科植物宿主和相容的根瘤菌之间存在共同分布和共同进化。所有这些数据表明,根瘤菌的生物地理学是宿主豆类,细菌基因组背景和环境之间相互作用的结果。

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