Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Jeonju 54874, Korea.
Department of Agricultural Biology, National Institute of Agricultural Sciences, Jeonju 55365, Korea.
Int J Mol Sci. 2021 May 25;22(11):5577. doi: 10.3390/ijms22115577.
Bacterial communities in rhizosphere and root nodules have significant contributions to the growth and productivity of the soybean ( (L.) Merr.). In this report, we analyzed the physiological properties and dynamics of bacterial community structure in rhizosphere and root nodules at different growth stages using BioLog EcoPlate and high-throughput sequencing technology, respectively. The BioLog assay found that the metabolic capability of rhizosphere is in increasing trend in the growth of soybeans as compared to the bulk soil. As a result of the Illumina sequencing analysis, the microbial community structure of rhizosphere and root nodules was found to be influenced by the variety and growth stage of the soybean. At the phylum level, Actinobacteria were the most abundant in rhizosphere at all growth stages, followed by Alphaproteobacteria and Acidobacteria, and the phylum Bacteroidetes showed the greatest change. But, in the root nodules Alphaproteobacteria were dominant. The results of the OTU analysis exhibited the dominance of during the entire stage of growth, but the ratio of non-rhizobial bacteria showed an increasing trend as the soybean growth progressed. These findings revealed that bacterial community in the rhizosphere and root nodules changed according to both the variety and growth stages of soybean in the field.
根际和根瘤中的细菌群落对大豆((L.) Merr.)的生长和生产力有重要贡献。在本报告中,我们分别使用 Biolog EcoPlate 和高通量测序技术分析了不同生长阶段根际和根瘤中细菌群落结构的生理特性和动态。Biolog 分析发现,与原状土壤相比,大豆生长过程中根际的代谢能力呈上升趋势。Illumina 测序分析结果表明,根际和根瘤的微生物群落结构受大豆品种和生长阶段的影响。在门水平上,根际在所有生长阶段都以放线菌为主,其次是α变形菌和酸杆菌,而拟杆菌门的变化最大。但是,在根瘤中,α变形菌占优势。OTU 分析的结果表明,在整个生长阶段都占优势,但随着大豆生长的进行,非根瘤细菌的比例呈上升趋势。这些发现表明,根际和根瘤中的细菌群落根据大豆在田间的品种和生长阶段而变化。