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首页> 外文期刊>Soil Biology & Biochemistry >Dynamics of the bacterial community structure in the rhizosphere of a maize cultivar.
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Dynamics of the bacterial community structure in the rhizosphere of a maize cultivar.

机译:玉米根际细菌群落结构的动态变化。

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Rhizosphere bacteria have significant contributions to crop health, productivity and carbon sequestration. As maize (Zea mays) is an important economic crop, its rhizosphere bacterial communities have been intensively investigated using various approaches. However, low-resolution profiling methods often make it difficult to understand the complicated rhizosphere bacterial communities and their dynamics. In this study, we analyzed growth-stage related dynamics of bacterial community structures in the rhizosphere of maize using the pyrosequencing method, which revealed an assembly of bacteria enriched in the rhizosphere. Our results revealed that the rhizosphere of maize was preferentially colonized by Proteobacteria, Bacteroidetes and Actinobacteria, and each bacterial phylum was represented by one or two dominating subsets of bacterial groups. Dominant genera enriched in the rhizosphere included Massilia, Burkholderia, Ralstonia, Dyella, Chitinophaga and Sphingobium. Rhizosphere bacterial community structures significantly changed through different growth stages at lower taxonomic ranks (family, genus and OTU levels). Genera Massilia, Flavobacterium, Arenimonas and Ohtaekwangia were relatively abundant at early growth stages, while genera Burkholderia, Ralstonia, Dyella, Chitinophaga, Sphingobium, Bradyrhizobium and Variovorax populations were dominant at later stages. Comparisons of pyrosequencing data collected in Illinois, USA in this study with the available data from Braunschweig, Germany indicated many common bacterial inhabitants but also many differences in the structure of bacterial communities, implying that some site-specific factors, such as soil properties, may play important roles in shaping the structure of rhizosphere bacterial community.
机译:根际细菌对作物健康,生产力和碳固存有重要贡献。由于玉米(Zea mays)是重要的经济作物,因此已使用各种方法对其根际细菌群落进行了深入研究。但是,低分辨率的分析方法通常使人们难以理解复杂的根际细菌群落及其动态。在这项研究中,我们使用焦磷酸测序法分析了玉米根际中细菌群落结构的生长阶段相关动力学,揭示了在根际中富集的细菌。我们的研究结果表明,玉米的根际优先被细菌变形杆菌,拟杆菌和放线菌定居,每个细菌门都由一个或两个主要的细菌群代表。根际中丰富的主要属包括马西利亚,伯克霍尔德氏菌,罗尔斯通氏菌,狄拉氏菌,几丁质和鞘氨醇。在较低的生物分类等级(家庭,属和OTU水平)下,根际细菌群落结构在不同的生长阶段显着改变。 Massilia属,黄杆菌属,Arenimonas属和Ohtaekwangia属在早期生长阶段相对丰富,而Burkholderia属,Ralstonia,Dyella,Chitinophaga属,Sphingobium,Bradyrhizobium和Variovorax属居后期。在本研究中,从美国伊利诺伊州收集的焦磷酸测序数据与德国不伦瑞克的可用数据进行了比较,结果表明许多常见的细菌栖息地,但细菌群落的结构也存在许多差异,这暗示着某些特定地点的因素(例如土壤性质)可能在塑造根际细菌群落的结构中起重要作用。

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