Soybean productivity can be enhanced by understanding rhizosphere microbiota:evidence from metagenomics analysis from diverse agroecosystems
文献类型: 外文期刊
作者: Honglei Ren;; Huilong Hong;; Bire Zha;; Sobhi F. Lamlom;; Hongmei Qiu;; Yongqiang Cao;; Rujian Sun;;Haorang Wang;; Junkui Ma;; Hengbin Zhang;; Liping Sun;; Qing Yang;; Changjun Zhou;; Xiulin Liu;;Xueyang Wang;; Chunlei Zhang;; Fengyi Zhang;; Kezhen Zhao;; Rongqiang Yuan;; Ahmed M. Abdelghany;;Bixian Zhang;; Yuhong Zheng;; Jiajun Wang and Wencheng Lu
关键词: Co-occurrence networks; Metagenomic sequencing; Rhizosphere microbiota; Soybean (Glycine max).
期刊名称: Microbiome
ISSN: 2049-2618
年卷期: 2025 年
页码:
收录情况: SCIE(2025版)
摘要: Background Microbial communities associated with roots play a crucial role in the growth and health of plants and are constantly influenced by plant development and alterations in the soil environment. Despite extensive rhizosphere microbiome research, studies examining multi-kingdom microbial variation across large-scale agricultural gradients remain limited.Results This study investigates the rhizosphere microbial communities associated with soybean across 13 diverse geographical locations in China. Using high-throughput shotgun metagenomic sequencing on the BGISEQ T7 platform with 10 GB per sample, we identified a total of 43,337 microbial species encompassing bacteria, archaea,fungi, and viruses. Our analysis revealed significant site-specific variations in microbial diversity and community composition, underscoring the influence of local environmental factors on microbial ecology. Principal coordinate analysis (PCoA) indicated distinct clustering patterns of microbial communities, reflecting the unique environmental conditions and agricultural practices of each location. Network analysis identified 556 hub microbial taxa significantly correlated with soybean yield traits, with bacteria showing the strongest associations. These key microorganisms were found to be involved in critical nutrient cycling pathways, particularly in carbon oxidation, nitrogen fixation, phosphorus solubilization, and sulfur metabolism. Our findings demonstrate the pivotal roles of specific microbial taxa.
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