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首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Application of N-2-fixing Paenibacillus triticisoli BJ-18 changes the compositions and functions of the bacterial, diazotrophic, and fungal microbiomes in the rhizosphere and root/shoot endosphere of wheat under field conditions
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Application of N-2-fixing Paenibacillus triticisoli BJ-18 changes the compositions and functions of the bacterial, diazotrophic, and fungal microbiomes in the rhizosphere and root/shoot endosphere of wheat under field conditions

机译:N-2固定Paenibacillus BJ-18在田间条件下改变小麦根际和根/枝末端的细菌,无键性和真菌微生物体的组合物和功能

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摘要

From 2015 to 2018, we continuously applied the diazotroph Paenibacillus triticisoli BJ-18 as an inoculant to soil cropped winter wheat under field condition. Based on 16S rRNA, nifH, ITS, and shotgun metagenome sequencing, we investigated the influences of diazotroph on the composition and function of the bacterial, diazotrophic, and fungal communities in the rhizosphere and root/shoot endosphere of wheat in 2018. P. triticisoli BJ-18 significantly increased soil total N, available P, organic matter, nitrogenase activity, and wheat yield. The diversities of the rhizospheric bacterial community were higher in the inoculation treatment than the non-inoculation treatment, while the relative abundances of rhizospheric fungal, endospheric bacterial, and diazotrophic communities were lower in the inoculation treatment. Paenibacillus became dominant in the rhizosphere and root, and also the relative abundance of indigenous diazotrophs was increased by inoculation. The microbial inoculation also significantly increased the relative abundances of indigenous plant growth-promoting microbes (Bacillus, Klebsiella, and Podospora) but decreased the relative abundances of indigenous pathogenic fungi (Alternaria). Notably, some nitrogenase gene abundances were significantly enriched by inoculation. These results demonstrated that P. triticisoli BJ-18, acting as a keystone species, can change (optimize) the composition and function of plant microbiome to promote plant growth and productivity.
机译:从2015年到2018年,我们将Diazotroph Paenibacillus Triticisoli BJ-18持续应用于田间条件下的土壤冬小麦的孕育剂。基于16S rRNA,Nifh,其和霰弹枪毕业蛋白酶测序,研究了DiazotoRph在2018年小麦根际和根射下骨骼的细菌,无催化和真菌社区的组成和功能的影响.P.Triticisoli BJ-18显着增加土壤总量N,可用的P,有机物,氮酶活性和小麦产量。接种治疗的疏散性细菌群落的多样性比非接种处理更高,而接种处理中的根茎真菌,内肌细菌和无解竞利性社区的相对丰度较低。 Paenibacillus在根际和根系中变得显着,并且也通过接种增加了土着重氮化的相对丰度。微生物接种还显着增加了土着植物生长促进微生物(Bacillus,Klebsiella和Podospora)的相对丰度,但降低了土着致病真菌(alertaria)的相对丰度。值得注意的是,通过接种显着富集一些氮酶基因丰富。这些结果表明,粉末isoli bj-18,作为梯形物种,可以改变(优化)植物微生物组的组成和功能,以促进植物生长和生产率。

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