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Phylogenetically clustering of rhizobia by genome structure: application to unclassified Rhizobium

机译:根瘤菌通过基因组结构的系统发生聚类:在未分类的根瘤菌中的应用

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Previous research reveals that the genome structures of rhizobial type strains and reference strains can reflect their phylogenetic relationships. In order to further explore the potential application of genome structure as a phylogenetic marker in rhizobial natural taxonomy, this study analyzed the genome structures of 29 unclassified nodule bacteria isolated from the root nodules of leguminous trees, Robinia sp., Dalbergia spp., and Albizia spp. and 7 rhizobial reference strains by I-CeuI cleavage, then clustered these bacteria phylogenetically based on their genome structures and compared these clusters with those based on numerical taxonomy and 16S rDNA PCR-RFLP. Eleven phylogenetic clusters were obtained. The clusters were in large part consistent with those based on numerical taxonomy and 16S rDNA PCR-RFLP. Also there are inconsistent clusters based on the above three methods. But results are completely consistent with 16S rRNA clusters. This suggested that the genome structure clustering method can be used to fastly identify root nodule isolates and detect their phylogenetic relationships. The credibility and repeatability of the results, together with the simplicity and possibility to analyze a large number of strains in a short time of the method, indicates the broad potential application of genome structure as phylogenetic marker to categorize rhizobial isolates and should in the future facilitate biodiversity studies.
机译:先前的研究表明,根瘤菌型菌株和参考菌株的基因组结构可以反映它们的系统发育关系。为了进一步探索基因组结构作为系统发育标记在根瘤菌自然分类学中的潜在应用,本研究分析了从豆科树,Robinia sp。,Dalbergia spp。和Albizia的根瘤分离的29种未分类的根瘤细菌的基因组结构。 spp。然后通过I-CeuI切割将其与7个根瘤菌参考菌株进行比较,然后根据它们的基因组结构对这些细菌进行系统发育聚类,并将这些聚类与基于数字分类法和16S rDNA PCR-RFLP的聚类进行比较。获得了11个系统发育簇。这些聚类在很大程度上与基于数字分类法和16S rDNA PCR-RFLP的聚类一致。基于以上三种方法的聚类也不一致。但是结果与16S rRNA簇完全一致。这表明基因组结构聚类方法可用于快速鉴定根瘤分离株并检测其系统发生关系。结果的可靠性和可重复性,以及在该方法的短时间内分析大量菌株的简便性和可能性,表明基因组结构作为系统学标记物在根瘤菌分离株分类中具有广泛的潜在应用,将来应会促进生物多样性研究。

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