高粱
生物
词根(语言学)
农学
氮气
作文(语言)
代谢物
植物
化学
有机化学
语言学
哲学
生物化学
作者
Yen Ning Chai,Yunhui Qi,Emily Goren,Dawn Chiniquy,Amy M. Sheflin,Susannah G. Tringe,Jessica E. Prenni,Peng Liu,Daniel P. Schachtman
出处
期刊:MSystems
[American Society for Microbiology]
日期:2023-12-22
卷期号:9 (1): e0119023-e0119023
被引量:22
标识
DOI:10.1128/msystems.01190-23
摘要
. Multiple strong correlations were detected between root metabolites and rhizosphere bacterial communities in response to low N stress. This indicates that the shift in the sorghum microbiome due to low N is associated with the root metabolites of the host plant. Taken together, our findings suggest that host genetic regulation of root metabolites plays a role in defining the root-associated microbiome of sorghum genotypes differing in NUE and tolerance to low N stress.IMPORTANCEThe development of crops that are more nitrogen use-efficient (NUE) is critical for the future of the enhanced sustainability of agriculture worldwide. This objective has been pursued mainly through plant breeding and plant molecular engineering, but these approaches have had only limited success. Therefore, a different strategy that leverages soil microbes needs to be fully explored because it is known that soil microbes improve plant growth through multiple mechanisms. To design approaches that use the soil microbiome to increase NUE, it will first be essential to understand the relationship among soil microbes, root metabolites, and crop productivity. Using this approach, we demonstrated that certain key metabolites and specific microbes are associated with high and low sorghum NUE in a field study. This important information provides a new path forward for developing crop genotypes that have increased NUE through the positive contribution of soil microbes.
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