首页|期刊导航|农业科学学报(英文)|Low-phosphorus stress induces GmSTOP1-3-mediated organic acid exudation to recruit phosphate-solubilizing bacteria for organic phosphorus mineralization in soybean rhizosphere
Low-phosphorus stress induces GmSTOP1-3-mediated organic acid exudation to recruit phosphate-solubilizing bacteria for organic phosphorus mineralization in soybean rhizosphere
Qianqian Chen Cuiyue Liang Xing Lu Guoxuan Liu Tianqi Wang Huiying Zhou Jihui Tian Qing Yao Jinming He Jiang Tian
农业科学学报(英文)2026,Vol.25Issue(5):2077-2092,16.
农业科学学报(英文)2026,Vol.25Issue(5):2077-2092,16.DOI:10.1016/j.jia.2025.08.015
Low-phosphorus stress induces GmSTOP1-3-mediated organic acid exudation to recruit phosphate-solubilizing bacteria for organic phosphorus mineralization in soybean rhizosphere
Low-phosphorus stress induces GmSTOP1-3-mediated organic acid exudation to recruit phosphate-solubilizing bacteria for organic phosphorus mineralization in soybean rhizosphere
摘要
关键词
organic acid/phosphorus-cycling genes/phosphorus fractions/transcription factor/phosphatase activityKey words
organic acid/phosphorus-cycling genes/phosphorus fractions/transcription factor/phosphatase activity引用本文复制引用
Qianqian Chen,Cuiyue Liang,Xing Lu,Guoxuan Liu,Tianqi Wang,Huiying Zhou,Jihui Tian,Qing Yao,Jinming He,Jiang Tian..Low-phosphorus stress induces GmSTOP1-3-mediated organic acid exudation to recruit phosphate-solubilizing bacteria for organic phosphorus mineralization in soybean rhizosphere[J].农业科学学报(英文),2026,25(5):2077-2092,16.基金项目
This work was supported by National Key Research and Development Program of China(2021YFF1000500),the National Science and Technology Innovation 2030 Major Program,China(2023ZD04072),the Guangdong Basic and Applied Basic Research Foundation,China(2025A1515012159). (2021YFF1000500)