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The diversity and abundance of phytase genes (β -propeller phytases) in bacterial communities of the maize rhizosphere

机译:玉米根际细菌群落中植酸酶基因(β-脯乳酶)的多样性和丰度

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摘要

The ecology of microbial communities associated with organic phosphorus (P) mineralization in soils is still understudied. Here, we assessed the abundance and diversity of bacteria harbouring genes encoding beta-propeller phytases (BPP) in the rhizosphere of traditional and transgenic maize cultivated in two Brazilian soils. We found a soil-dependent effect towards a higher abundance of phytase genes in the rhizosphere, and an absence of any impact of plant genotype. Phylogenetic analyses indicated members of the genera Pseudomonas, Caulobacter, Idiomarina and Maricaulis, close to uncultured bacteria', to constitute the dominant bacteria hosting this gene. The results obtained validate a methodology to target bacteria that are involved in the organic P cycle, and depict the responsiveness of such bacteria to the rhizosphere, albeit in dependency of the soil in which maize is cultivated. The data also identified the major bacterial groups that are associated with the organic P mineralization function.
机译:仍然可以解读与土壤中有机磷(P)矿化相关的微生物群落的生态。在这里,我们评估了在两种巴西土壤中培养的传统和转基因玉米的根际编码β-螺旋桨植物酶(BPP)的细菌的丰富和多样性。我们发现了朝向根际植物基因较高的植酸酶基因的土壤依赖性作用,并且没有植物基因型的任何影响。系统发育分析表明属于伪芽孢菌,血管杆菌,伊科纳和马其科的成员,接近未培养的细菌,构成宿主该基因的主要细菌。得到的结果验证了靶向有机P循环的靶细菌的方法,并描述这种细菌对根际的反应性,尽管均依赖于玉米的土壤依赖于玉米。数据还鉴定了与有机P矿化功能相关的主要细菌基团。

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