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首页> 外文期刊>Current Microbiology: An International Journal >Genetic Structure of the Bacterial Endosymbiont Buchnera aphidicola from Its Host Aphid Schlechtendalia chinensis and Evolutionary Implications
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Genetic Structure of the Bacterial Endosymbiont Buchnera aphidicola from Its Host Aphid Schlechtendalia chinensis and Evolutionary Implications

机译:细菌胚胎症状蚜虫症的遗传结构从其症蚜虫施洛赫达德尼亚中华民区和进化意义

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Buchnera aphidicola is a primary symbiotic bacterium which provides essential amino acids to aphids. In this study, we sequenced nuclear 16s rDNA and atpAGD genes for 156 individuals of B. aphidicola from eight geographically distant populations to investigate the genetic diversity and structure of B. aphidicola associated to the sumac gall aphid Schlechtendalia chinensis in central and southern China. Our analyses of the combined sequences showed that B. aphidicola from S. chinensis had high haplotype and nucleotide diversity (h = 0.893; pi = 0.00164). One of the 16 haplotypes detected had a wide geographic distribution across the central and southern China and was probably the ancestral haplotype of B. aphidicola from S. chinensis. A network and phylogenetic analysis revealed a geographic structure in which the 16 haplotypes of B. aphidicola were divided into the northern and southern clades separated by the Yangtze River. The two clades diverged from each other at 22.1 +/- 3.7 Mya according to our divergence time estimations. Therefore, the modern genetic structure in B. aphidicola from S. chinensis has been probably impacted by historical geological events. Combined with the data from GenBank, we also reconstructed the phylogenetic relationships of three aphid subfamilies and their symbiont bacteria. The results indicated significant topological correlations between the aphid and bacterial phylogenies at interspecific levels.
机译:Buchnera蚜虫是一种主要的共生细菌,为蚜虫提供必需的氨基酸。在这项研究中,我们从八个地理上远处群体中排序核16S rDNA和ATPAGD基因,从八个地理上居住的群体中测定了B.蚜虫的156个人,以研究与中国中部和南方的Sumac Gall Aphid Schlechtendalia Chinensis相关的B.Phidicola的遗传多样性和结构。我们对组合序列的分析表明,来自S.的B.蚜虫苷与S.Chinensis具有高单倍型和核苷酸多样性(H = 0.893; PI = 0.00164)。检测到的16个单倍型之一在中国中部和南部有广泛的地理分布,可能是来自S.Hychensis的B.Phidicola的祖先单倍型。网络和系统发育分析显示了一种地理结构,其中B.蚜虫的16个单倍型分为由长江分离的北部和南部的南部。根据我们的分歧时间估计,两种片间在22.1 +/- 3.7 mya中彼此分歧。因此,B.来自S.的B.蚜虫的现代遗传结构可能受到历史地质事件的影响。结合来自Genbank的数据,我们还重建了三个蚜虫亚属和其Symbiont细菌的系统发育关系。结果表明了蚜虫和细菌化学生成之间的显着拓扑相关性。

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