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Rice root-associated bacteria – insights in community structures across ten cultivars

机译:水稻根系相关细菌–对十个品种的群落结构的见解

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摘要

In this study, the effect of plant genotype, soil type and nutrient use efficiency on the composition of different bacterial communities associated with rice roots were investigated. Thus, total bacteria, Alpha- and Beta-proteobacteria, Pseudomonas and Actinobacteria were studied using PCR followed by denaturing gradient gel electrophoresis (PCR-DGGE). Rice genotype determined to a large extent the composition of the different bacterial communities across cultivars. Several cultivars belonging to Oryza sativa subspecies indica tended to select similar bacterial communities, whereas those belonging to subspecies japonica and aromatica selected ones with divergent community structures. An effect of soil type was pronounced for the Actinobacteria communities, while a small effect of ‘improved’ and ‘traditional’ plants was noted for all communities analysed. A few dominant bands in PCR-DGGE, affiliated with Rhizobium radiobacter, Dickeya zeae, Mycobacterium bolletii and with members of the Rhizobiales, Rhodospirillaceae and Paenibacillaceae were spread across cultivars. In contrast, a majority of bands (e.g. affiliated with Enterobacter cloacae or Burkholderia kururiensis) was only present in particular cultivars or was erratically distributed amongst rice replicates. The data suggested that both bacterial adaptation and plant genotype contribute to the shaping of the dynamic bacterial communities associated with roots of rice plants.
机译:在这项研究中,研究了植物基因型,土壤类型和养分利用效率对与稻根相关的不同细菌群落组成的影响。因此,使用PCR,然后变性梯度凝胶电泳(PCR-DGGE),研究了总细菌,α-和β-变形杆菌,假单胞菌和放线菌。水稻的基因型在很大程度上决定了不同品种中不同细菌群落的组成。属于稻米亚种的几个品种倾向于选择相似的细菌群落,而属于粳稻和芳香亚种的那些则选择具有不同群落结构的品种。土壤类型对放线菌群落的影响是明显的,而对所有分析过的群落而言,“改良”和“传统”植物的影响很小。 PCR-DGGE中的几个显性谱带分布在各个品种上,这些谱带分别与放射状根瘤菌,Dickeya zeae,分枝杆菌和根瘤菌,Rhodospirillaceae和Paenibacillaceae的成员有关。相反,大多数条带(例如与阴沟肠杆菌或库克伯克霍尔德氏菌相关的条带)仅存在于特定品种中,或不规则地分布在水稻复制品中。数据表明细菌的适应性和植物的基因型都有助于形成与水稻根部相关的动态细菌群落。

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