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Diversity of the bacterial community in the surface soil of a pear orchard based on 16S rRNA gene analysis

机译:基于16S rRNA基因分析的梨园表层土壤细菌群落多样性

摘要

A cultivation-independent approach based on polymerase chain reaction (PCR)-amplified partial small subunit rRNA genes was used to characterize bacterial populations in the surface soil of a commercial pear orchard consisting of different pear cultivars during two consecutive growing seasons. Pyrus communis L. cvs Blanquilla, Conference, and Williams are among the most widely cultivated cultivars in Europe and account for the majority of pear production in Northeastern Spain. To assess the heterogeneity of the community structure in response to environmental variables and tree phenology, bacterial populations were examined using PCR-denaturing gradient gel electrophoresis (DGGE) followed by cluster analysis of the 16S ribosomal DNA profiles by means of the unweighted pair group method with arithmetic means. Similarity analysis of the band patterns failed to identify characteristic fingerprints associated with the pear cultivars. Both environmentally and biologically based principal-component analyses showed that the microbial communities changed significantly throughout the year depending on temperature and, to a lesser extent, on tree phenology and rainfall. Prominent DGGE bands were excised and sequenced to gain insight into the identities of the predominant bacterial populations. Most DGGE band sequences were related to bacterial phyla, such as Bacteroidetes, Cyanobacteria, Acidobacteria, Proteobacteria, Nitrospirae, and Gemmatimonadetes, previously associated with typical agronomic crop environments
机译:基于聚合酶链反应(PCR)扩增的部分小亚基rRNA基因的不依赖培养的方法用于表征两个连续生长季节中由不同梨品种组成的商品梨果园表层土壤中的细菌种群。 Pyrus communis L. cvs Blanquilla,Conference和Williams是欧洲种植最广泛的品种,占西班牙东北部梨产量的大部分。为了评估响应环境变量和树木物候的群落结构的异质性,使用PCR变性梯度凝胶电泳(DGGE)检查细菌种群,然后通过非加权对组方法对16S核糖体DNA谱进行聚类分析。算术手段。条带模式的相似性分析未能确定与梨品种相关的特征指纹。基于环境和生物学的主成分分析均表明,全年微生物群落的变化主要取决于温度,并且在较小程度上取决于树木物候和降雨。切下突出的DGGE条带并进行测序,以深入了解主要细菌种群的身份。大多数DGGE带序列与细菌菌门相关,例如拟杆菌,蓝细菌,酸性杆菌,变形杆菌,硝化螺旋菌和芽孢杆菌,以前与典型的农艺作物环境有关。

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