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Characterization and Identification of Productivity-Associated Rhizobacteria in Wheat

机译:小麦生产力相关根瘤菌的表征和鉴定

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The rhizosphere is populated by a numerous and diverse array of rhizobacteria, and many impact productivity in largely unknown ways. Here we characterize the rhizobacterial community in a wheat variety categorized according to shoot biomass using 16S rRNA pyrosequencing abundance data. Plants were grown in homogenized field soil under greenhouse conditions, and DNA was extracted and pyrosequenced, resulting in 29,007 quality sequences. Operational taxonomic units (OTUs) that were significantly associated with biomass productivity were identified using an exact test adjusted for the false-discovery rate. The productivity deviation expressed as a percentage of the total mean square for regression (PMSR) was determined for each OTU. Out of 719 OTUs, 42 showed significant positive associations and 39 showed significant negative associations ( q value, ≤0.05). OTUs with the greatest net positive associations, by genus, were as follows: Duganella , OTU 43 and OTU 3; Janthinobacterium , OTU 278; Pseudomonas , OTU 588; and Cellvibrio , OTU 1847. Those with negative associations were as follows: Bacteria , OTU 273; Chryseobacterium , OTU 508; Proteobacteria , OTU 249; and Enterobacter , OTU 357. Shoot biomass productivity was strongly correlated with the balance between the overall abundances of positive- and negative-productivity-associated OTUs. High-productivity rhizospheres contained 9.2 significant positives for every negatively associated rhizobacterium, while low-productivity rhizospheres showed 2.3 significant negatives for every positively associated rhizobacterium. Overall rhizobacterial community diversity as measured by the Chao1, Shannon, and Simpson indexes was nonlinearly related to productivity, closely fitting a wavelike cubic equation. We conclude that shoot biomass productivity is strongly related to the ratio of positive- to negative-productivity-associated rhizobacteria in the rhizosphere. This study identifies significant OTUs composing the productive and unproductive rhizobacterial communities.
机译:根际由许多不同种类的根际细菌组成,并且许多以未知的方式影响生产力。在这里,我们使用16S rRNA焦磷酸测序丰度数据对根据芽生物量分类的小麦品种中的根际细菌群落进行表征。植物在温室条件下的均质田间土壤中生长,提取DNA并进行焦磷酸测序,得到29,007个质量序列。使用针对错误发现率进行调整的精确测试,确定与生物质生产力显着相关的操作分类单位(OTU)。确定了每个OTU的生产率偏差,表示为总回归均方根(PMSR)的百分比。在719个OTU中,有42个具有显着的正相关,而有39个具有显着的负相关(q值,≤0.05)。按属,具有最大净正相关性的OTU如下:Duganella,OTU 43和OTU 3;詹氏杆菌属,OTU 278;假单胞菌,OTU 588;具有负相关性的那些如下:细菌,OTU 273;和细菌,OTU 273。金黄杆菌,OTU 508;蛋白酶,OTU 249;和肠杆菌,OTU357。茎生物量生产力与正生产力和负生产力相关的OTU的总体丰度之间的平衡密切相关。高生产率的根际对每个负相关的根瘤菌均含有9.2个显着阳性,而低生产率的根际对每个正相关的根瘤菌均具有2.3个显着阴性。通过Chao1,Shannon和Simpson指数测得的整体根瘤菌群落多样性与生产力呈非线性关系,非常接近于波浪形三次方程。我们得出的结论是,枝条生物量的生产力与根际中正生产力相关性与负生产力相关的根际细菌的比例密切相关。这项研究确定了构成生产性和非生产性根瘤菌群落的重要OTU。

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