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The Structure and Functions of Bacterial Communities in an Agrocenosis

机译:农杆菌病中细菌群落的结构和功能

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The most significant factor responsible for the specific taxonomic composition of the bacterial communities in the agrocenosis studied was found to be a part or organ of plants (leaves, flowers, roots, fruits). A stage of plant ontogeny also determines changes of taxa. In the course of the plant growth, eccrisotrophic bacteria are replaced by hydrolytic ones that belong to the group of cellulose-decomposing bacteria. Representatives of the proteobacteria genera that are difficult to identify by phenotypic methods were determined using molecular-biological methods. They were revealed only on oat leaves in the moist period. As the vetch-oat mixture was fertilized with BIOUD-1 (foliar application) in the phyllosphere of both oats and vetch, on all the plant organs, representatives of the Rhodococcus genus as dominants were isolated. This fact was related to the capability of bacteria to decompose the complex aromatic compounds that are ingredients of the fertilizers applied. Another positive effect for plants of the bacterial communities forming in agrocenoses is the presence of bacteria that are antagonists of phytopathogenic bacteria. Thus, in agrocenoses, some interrelationships promoting the growth and reproduction of plants are formed in crop plants and bacteria.
机译:在研究的农杆菌病中,造成细菌群落特定生物分类组成最重要的因素是植物的一部分或器官(叶子,花朵,根,果实)。植物个体发育的阶段也决定了分类单元的变化。在植物生长的过程中,偏营养细菌被属于纤维素分解细菌类的水解细菌所替代。使用分子生物学方法确定了难以通过表型方法鉴定的变形杆菌属的代表。它们仅在湿润时期的燕麦叶上被发现。当在燕麦和紫v的叶际中用BIOUD-1(叶面施肥)对紫etch-燕麦混合物施肥时,在所有植物器官上,红球菌属的代表被分离为优势菌。这个事实与细菌分解作为肥料成分的复杂芳香化合物的能力有关。对在农杆菌中形成的细菌群落的植物的另一积极作用是存在作为植物致病细菌的拮抗剂的细菌。因此,在农杆菌中,在农作物和细菌中形成了促进植物生长和繁殖的一些相互关系。

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