根际
氮气
生物量(生态学)
微生物种群生物学
固氮
细菌
氮气循环
化学
生物
植物
农学
有机化学
遗传学
作者
Zhibin Liu,Qini Xia,Jing Cai,Ziyuan Wang,Kexin Yang,Ding‐bang Chen,Jiahong Wei,Cun Chen,Chao Liu,Wei Chang,Zhi Li,Xufeng Li,Yi Yang,Liang Yang,Xiao Tan
标识
DOI:10.1021/acs.jafc.3c07623
摘要
The phenomenon of microbial hitchhiking, where nonmotile microbes utilize transspecies motility to navigate within their environment, has been observed. However, the underlying factors driving microbial hitchhiking remain unclear. Our study explored how nitrogen fertilizers affect microbial hitchhiking in soil through an in situ planting experiment. We established twelve treatments encompassing the presence and absence of plants, the presence and absence of a filter membrane that is used to prevent hitchhiking, and three nitrogen levels. Results showed that nitrogen influenced bacterial diversity in all soils, an effect thwarted by filter membranes. In the presence of plants, nitrogen significantly affected the bacterial mobility, Bacillus abundance, and plant biomass, but these effects vanished when filters were used. The correlation between motile Bacillus and rhizosphere bacteria was strong without filters at the proper nitrogen levels but weakened with membrane treatments. Thus, plants and nitrogen together, not nitrogen alone, alter the soil microbiome via hitchhiking.
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