细胞生物学
生长素
生物
生物化学
核苷酸糖
突变体
脱氢酶
细胞生长
活性氧
细胞壁
核苷酸
酶
信号转导
细胞信号
细胞分裂
细胞
新陈代谢
生物合成
化学
逆行信号
线粒体
拟南芥
根毛
植物细胞
作者
Fei Chen,Guojun Dong,L M Wu,Lixuan Yao,Jingwen Yao,Yaohuang Jiang,Yanli Zhang,Banpu Ruan,Xue Feng,Fang Wang,Zhong‐Hua Chen,Qian Qian,Yanchun Yu
摘要
SUMMARY Nucleotide sugars serve as the substrates for the biosynthesis of cell wall polysaccharides. Although the enzymes such as uridine diphosphate (UDP)‐glucose dehydrogenase (UGD) involved in nucleotide sugar biosynthesis have been biochemically characterized, their biological roles in plants remain largely unexplored. In this study, we identify a rice mutant weakness and root hair defective 1 ( wrd1 ), which exhibits pleiotropic phenotypes including dwarfism, reduced tiller number, and abnormal root architecture. WRD1 encodes a UGD that catalyzes the conversion of UDP‐Glc to UDP‐GlcA. The WRD1 mutation disrupts this enzymatic function and substantially reduces UGD activity in vivo , resulting in elevated UDP‐Glc accumulation, decreased UDP‐GlcA levels, and consequently an imbalance in their downstream derivatives. The aberrant UDP‐sugar metabolism significantly impairs cell wall architecture and auxin glycosylation in the wrd1 mutant, accompanied by dysregulated reactive oxygen species (ROS) homeostasis and auxin‐related gene expression. These combined effects lead to excessive ROS production and abnormal auxin signaling in root cells, resulting in programmed cell death and severe developmental defects. Our findings highlight the critical role of WRD1 in regulating cell wall formation and overall plant growth by modulating nucleotide sugars homeostasis, which provides new insights into the interplay between cell wall biosynthesis, auxin signaling, and ROS metabolism during plant development.
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