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Soil Inoculation with Bacillus spp. Modifies Root Endophytic Bacterial Diversity Evenness and Community Composition in a Context-Specific Manner

机译:芽孢杆菌属土壤接种。以特定于上下文的方式修改根内生细菌的多样性均匀性和社区组成

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摘要

The use of microbial inoculants containing plant growth-promoting rhizobacteria as a promoter of plant fitness and health is becoming increasingly popular in agriculture. However, whether and how these bacteria affect indigenous bacterial communities in field conditions is sparsely explored. We studied the effects of seed inoculation and field soil application of ubiquitous soil bacteria, B. cereus, B. subtilis, and B. amyloliquefaciens, on the diversity, evenness, and richness of endophytic bacterial communities in sprouting broccoli roots using high-throughput metagenome sequencing. The multiple operational taxonomic units (OTUs) assigned to different bacterial taxa clearly showed changes in ecological measures and relative abundances of certain taxa between control and treatment groups. The Bacillus inocula, themselves, failed to flourish as endophytes; however, the effects they extended on the endophytic bacterial community were both generic as well as species specific. In each case, Pseudomonadales, Rhizobiales, Xanthomonadales, and Burkholderiales were the most abundant orders in the endosphere. B. amyloliquefaciens drastically reduced the most abundant genus, Pseudomonas, while increasing the relative abundance of a range of minor taxa. The Shannon-Weiner diversity and Buzas and Gibson’s evenness indices showed that the diversity and evenness were increased in both B. amyloliquefaciens and mixed treated plants. The UniFrac measurement of beta diversity showed that all treatments affected the specific composition of the endophytic bacterial community, with an apparent interspecies competition in the mixed treatment. Taken together, Bacillus species influenced the diversity, evenness, and composition of the endophytic bacterial community. However, these effects varied between different Bacillus spp. in a context-specific manner.
机译:在农业中,使用含有促进植物生长的根际细菌的微生物接种剂作为植物适应性和健康的促进剂。然而,稀疏地研究了这些细菌是否以及如何影响田间条件下的本土细菌群落。我们使用高通量基因组研究了种子接种和野外土壤细菌,蜡状芽孢杆菌,枯草芽孢杆菌和解淀粉芽孢杆菌对内生细菌群落多样性,均匀性和丰富性的影响,这些研究通过高通量基因组学进行。排序。分配给不同细菌类群的多个操作生物分类单位(OTU)清楚显示了对照组和处理组之间生态措施的变化以及某些类群的相对丰度。接种的芽孢杆菌本身不能作为内生菌繁殖。然而,它们对内生细菌群落的影响既是通用的又是物种特异性的。在每种情况下,假单胞菌,根瘤菌,Xanthomonadales和Burkholderiales是内球中数量最多的。淀粉芽孢杆菌极大地减少了最丰富的属,假单胞菌,同时增加了一系列次要分类群的相对丰度。 Shannon-Weiner多样性以及Buzas和Gibson的均匀度指数表明,解淀粉芽孢杆菌和混合处理植物的多样性和均匀度均增加。 UniFrac对β多样性的测量表明,所有处理均影响内生细菌群落的特定组成,并且在混合处理中明显存在种间竞争。总之,芽孢杆菌属物种影响内生细菌群落的多样性,均匀性和组成。但是,这些效果在不同的芽孢杆菌属之间有所不同。以特定于上下文的方式。

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