生长素
解淀粉芽孢杆菌
羽扇豆
生物
磷
缺磷
侧根
植物生理学
植物
突变体
化学
生物化学
拟南芥
基因
发酵
有机化学
作者
Jinyong Yang,Shenglan Li,Xiangxue Zhou,Chongxuan Du,Ju Fang,Xing Li,Jun Zhao,Fan Ding,Yue Wang,Qian Zhang,Zhengrui Wang,Jianping Liu,Gangqiang Dong,Jianhua Zhang,Feiyun Xu,Weifeng Xu
标识
DOI:10.1093/plphys/kiae676
摘要
Abstract White lupin (Lupinus albus L.) produces cluster roots to acquire more phosphorus under phosphorus deficiency. Bacillus amyloliquefaciens SQR9 contributes to plant growth, but whether and how it promotes cluster root formation in white lupin remain unclear. Here, we investigated the roles of SQR9 in cluster root formation under low-phosphorus conditions using a microbial mutant and virus-induced gene silencing (VIGS) in white lupin. SQR9 substantially enhanced cluster root formation under low-phosphorus conditions. The ysnE gene encodes an auxin biosynthesis enzyme in SQR9 and was associated with cluster root formation, as ysnE-defective SQR9 did not trigger cluster root formation. SQR9 inoculation induced the expression of PIN-formed2 (LaPIN2, encoding an auxin transporter) and YUCCA4 (LaYUC4, encoding an auxin biosynthesis enzyme) in white lupin roots. VIGS-mediated knockdown of LaPIN2 and LaYUC4 prevented wild-type SQR9-induced cluster root formation in white lupin. Finally, white lupin LaYUC4-derived auxin and SQR9-derived auxin pools were both transported by LaPIN2, promoting cluster root formation under low phosphorus conditions. Taken together, we propose that B. amyloliquefaciens promotes cluster root formation in white lupin under low-phosphorus conditions by stimulating auxin biosynthesis and transport. Our results provide insights into the interplay between bacteria and root auxin in crop phosphorus use efficiency.
科研通智能强力驱动
Strongly Powered by AbleSci AI