Yongjin Wang, Chulei Gao, Fang Liu, Yiheng Liu, Zhaoyang Zhou, Qi Wang, Fengxia Zhang, Hangyuan Cheng, Xinwei Jiang, Wei Wang, Binglei Wang, Yuanjie Tang, Feng Zhou, Guodong Wang, Yi-Ping Wang, Weicai Yang, Paul Schulze-Lefert, Dong Liu, Yang Bai, Jian-Min Zhou
It remains unknown whether plants establish mutualistic relationships with any bacteria to cope with phosphorus (P) limitation. We characterized root-bacterial microbiome members to show that many of them may cooperate with Arabidopsis to promote seedling P nutrition and growth. In-depth analyses uncovered an intricate interaction between Arabidopsis and Acinetobacter bacteria during P deficiency. Instead of a direct role in P-mining, malate secreted by P-deprived roots acts as a call-for-help signal that recruits bacteria to the rhizoplane, where Acinetobacter adopt a mutualistic lifestyle and utilize host-derived nutrients to robustly mobilize P normally inaccessible to plants. The rhizoplane, but not the surrounding space, served as a hotspot for P acquisition by both plants and bacteria. The interaction occurred in the context of a bacterial community and in P-impoverished soil. Our work reveals a mutualistic strategy between bacteria and a non-mycorrhizal plant that promotes P nutrition.