OsCYP51H9 Integrates Brassinosteroid Biosynthesis and Nitrogen Sensing to Enhance Grain Development and Nitrogen Utilization in Rice
Zhengli Jiao, Jianyi Li, Weijuan Xu, Lijuan Yin, Mingyong Zhang, Yongxia Jia +1 more
Plant Physiology and Biochemistry
Abstract
Nitrogen use efficiency (NUE) and grain development are pivotal for rice yield improvement, particularly under low-nitrogen (LN) conditions. Cytochrome P450 CYP51 family members are conserved obtusifoliol 14α-demethylases essential for phytosterol and brassinosteroid (BR) biosynthesis; however, the biological roles of the rice CYP51H subfamily remain largely unclear. Here, we characterized OsCYP51H9 , a gene encoding an endoplasmic reticulum-localized protein highly expressed in reproductive and vascular tissues. Loss-of-function mutants ( oscyp51h9 ) and RNAi lines exhibited BR-deficient phenotypes, including reduced plant height, impaired root growth, smaller grains, and erect leaves, which were associated with disrupted phytosterol and BR biosynthesis. While preliminary metabolite profi