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Variations of rhizospheric soil microbial communities in response to continuous Andrographis paniculata cropping practices

机译:响应连续的andrographis paniculata裁剪实践的根茎土壤微生物群落的变化

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BackgroundChanges of soil microbial communities are one of the main factors of continuous cropping problem. Andrographis paniculata has been reported to have replant problem in cultivation. However, little is known about the variations of rhizosphere soil microbial communities of A. paniculata under a continuous cropping system. Here, Illumina MiSeq was used to investigate the shifts of rhizospheric bacterial and fungal communities after continuous cropping of A. paniculata .ResultsThe bacterial diversity increased whereas the fungal diversity decreased in rhizosphere soil after consecutive A. paniculata monoculture; and the soil microbial community structure differed between newly plant soil and continuous cropped soil. Taxonomic analyses further revealed that the bacterial phyla Proteobacteria , Acidobacteria and Bacteroidetes and the fungal phyla Zygomycota , Ascomycota and Cercozoa were the dominant phyla across all soil samples. The relative abundance of phyla Acidobacteria and Zygomycota were significantly increased after continuous cropping. Additionally, the most abundant bacterial genus Pseudolabrys significantly decreased, while the predominant fungal genus Mortierella increased considerably in abundance after continuous cropping.ConclusionsOur results revealed the changes on diversity and composition of bacterial and fungal communities in rhizospheric soil under continuous cropping of A. paniculata . These data contributed to the understanding of soil micro-ecological environments in the rhizosphere of A. paniculata .
机译:土壤微生物社区的背景是连续作业问题的主要因素之一。据报道,andrographis paniculata在培养中具有补充问题。然而,关于在连续种植系统下A. Paniculata的根际土壤微生物群落的变化很少。在这里,Illumina miseq用于探讨持续种植A. Paniculata术后的脱钻细菌和真菌社区的偏移。细菌多样性增加,并且连续A. Paniculata单一栽培后的根际土壤中真菌多样性降低;土壤微生物群落结构不同于新植物土壤和连续裁剪土壤。分类学分析进一步揭示了细菌植物植物,抗杀伤挛伤菌和菌斑和真菌植物植物,Ascoycota和Cercozoa是所有土壤样品中的主要植物。在连续种植后,Phyla acidobacteria和Zygomycota的相对丰度显着增加。此外,最丰富的细菌属Pseudolabrys显着降低,而Martierella在连续种植后,Mortierella在丰富的丰富程度上显着增加。结论,结果揭示了在连续作物的突出作物下的脱菱土中细菌和真菌社区的变化。这些数据有助于了解A. Paniculata的根际土壤微生态环境。

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