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Community Structure Species Variation and Potential Functions of Rhizosphere-Associated Bacteria of Different Winter Wheat (Triticum aestivum) Cultivars

机译:不同冬小麦品种根际相关细菌的群落结构物种变异和潜在功能

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摘要

Minimal tillage management of extensive crops like wheat can provide significant environmental services but can also lead to adverse interactions between soil borne microbes and the host. Little is known about the ability of the wheat cultivar to alter the microbial community from a long-term recruitment standpoint, and whether this recruitment is consistent across field sites. To address this, nine winter wheat cultivars were grown for two consecutive seasons on the same plots on two different farm sites and assessed for their ability to alter the rhizosphere bacterial communities in a minimal tillage system. Using deep amplicon sequencing of the V1–V3 region of the 16S rDNA, a total of 26,604 operational taxonomic units (OTUs) were found across these two sites. A core bacteriome consisting of 962 OTUs were found to exist in 95% of the wheat rhizosphere samples. Differences in the relative abundances for these wheat cultivars were observed. Of these differences, 24 of the OTUs were found to be significantly different by wheat cultivar and these differences occurred at both locations. Several of the cultivar-associated OTUs were found to correspond with strains that may provide beneficial services to the host plant. Network correlations demonstrated significant co-occurrences for different taxa and their respective OTUs, and in some cases, these interactions were determined by the wheat cultivar. Microbial abundances did not play a role in the number of correlations, and the majority of the co-occurrences were shown to be positively associated. Phylogenetic Investigation of Communities by Reconstruction of Unobserved States was used to determine potential functions associated with OTUs by association with rhizosphere members which have sequenced metagenomics data. Potentially beneficial pathways for nitrogen, sulfur, phosphorus, and malate metabolism, as well as antimicrobial compounds, were inferred from this analysis. Differences in these pathways and their associated functions were found to differ by wheat cultivar. In conclusion, our study suggests wheat cultivars are involved in shaping the rhizosphere by differentially altering the bacterial OTUs consistently across different sites, and these altered bacterial communities may provide beneficial services to the host.
机译:像小麦这样的粗粮作物的最小耕种管理可以提供重要的环境服务,但也可能导致土壤传播的微生物与宿主之间发生不利的相互作用。从长期募集的角度来看,关于小麦品种改变微生物群落的能力以及这种征集在田间地点是否一致的知之甚少。为了解决这个问题,九个冬小麦品种在两个不同农场的同一土地上连续两个季节种植,并评估了它们在最小耕作系统中改变根际细菌群落的能力。使用16S rDNA V1-V3区域的深度扩增子测序,在这两个位点共发现26,604个操作生物分类单位(OTU)。 95%的小麦根际样品中存在由962个OTU组成的核心细菌群。观察到这些小麦品种的相对丰度有所不同。在这些差异中,有24个OTU被小麦品种发现有显着差异,并且这些差异发生在两个位置。已发现几种与品种相关的OTU与可能为宿主植物提供有益服务的菌株相对应。网络相关性表明,不同分类单元及其各自的OTU有明显的共现关系,在某些情况下,这些相互作用是由小麦品种决定的。微生物的丰度在相关性的数量上不起作用,并且大多数共生被证明是正相关的。通过对未观察到的国家的重建来进行社区的系统发育研究,通过与已测序宏基因组学数据的根际成员联系,确定与OTU相关的潜在功能。从该分析中推断出了氮,硫,磷和苹果酸代谢以及抗菌化合物的潜在有益途径。小麦品种发现这些途径及其相关功能的差异也不同。总之,我们的研究表明,小麦品种通过在不同位点一致改变细菌OTU来参与根际形成,而这些改变后的细菌群落可能为寄主提供有益的服务。

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