根际
固氮
根瘤菌
微生物种群生物学
固氮酶
植物
氮气
根瘤菌
氮气循环
生物
化学
重氮
细菌
有机化学
遗传学
作者
Yaohui Yang,Nuohan Xu,Zhenyan Zhang,Chaotang Lei,Bingfeng Chen,Guoyan Qin,Danyan Qiu,Tao Lu,Haifeng Qian
标识
DOI:10.1021/acs.jafc.3c09160
摘要
Nitrogen is the most limiting factor in crop production. Legumes establish a symbiotic relationship with rhizobia and enhance nitrogen fixation. We analyzed 1,624 rhizosphere 16S rRNA gene samples and 113 rhizosphere metagenomic samples from three typical legumes and three non-legumes. The rhizosphere microbial community of the legumes had low diversity and was enriched with nitrogen-cycling bacteria (Sphingomonadaceae, Xanthobacteraceae, Rhizobiaceae, and Bacillaceae). Furthermore, the rhizosphere microbiota of legumes exhibited a high abundance of nitrogen-fixing genes, reflecting a stronger nitrogen-fixing potential, and Streptomycetaceae and Nocardioidaceae were the predominant nitrogen-fixing bacteria. We also identified helper bacteria and confirmed through metadata analysis and a pot experiment that the synthesis of riboflavin by helper bacteria is the key factor in promoting nitrogen fixation. Our study emphasizes that the construction of synthetic communities of nitrogen-fixing bacteria and helper bacteria is crucial for the development of efficient nitrogen-fixing microbial fertilizers.
科研通智能强力驱动
Strongly Powered by AbleSci AI