Journal article

The chloroplast protease AMOS1/EGY1 affects phosphate homeostasis under phosphate stress

FW Yu, XF Zhu, GJ Li, HJ Kronzucker, WM Shi

Plant Physiology | OXFORD UNIV PRESS INC | Published : 2016

Abstract

Plastid intramembrane proteases in Arabidopsis (Arabidopsis thaliana) are involved in jasmonic acid biosynthesis, chloroplast development, and flower morphology. Here, we show that Ammonium-Overly-Sensitive1 (AMOS1), a member of the family of plastid intramembrane proteases, plays an important role in the maintenance of phosphate (P) homeostasis under P stress. Loss of function of AMOS1 revealed a striking resistance to P starvation. amos1 plants displayed retarded root growth and reduced P accumulation in the root compared to wild type (Col-0) under P-replete control conditions, but remained largely unaffected by P starvation, displaying comparable P accumulation and root and shoot growth u..

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University of Melbourne Researchers

Grants

Awarded by Chinese Academy of Sciences


Awarded by National Natural Science Foundation of China


Awarded by China Postdoctoral Science Foundation


Awarded by Natural Sciences and Engineering Research Council of Canada


Funding Acknowledgements

This work was funded by the Strategic Priority Research Program (B) - "Soil-Microbial System Function and Regulation" of the Chinese Academy of Sciences (XDB15030100), the National Natural Science Foundation of China (31430095), China Postdoctoral Science Foundation (2015M581877), and the Natural Sciences and Engineering Research Council of Canada (grant no. 217277-2009).