侧根
苯丙素
生物
细胞生物学
根毛
突变体
细胞内
运输机
非生物成分
突变
基因
拟南芥
根系
基因表达
功能(生物学)
非生物胁迫
阿魏酸
植物
表皮(动物学)
基因表达调控
战斗或逃跑反应
边框单元格
报告基因
遗传学
细胞壁
生物逆境
转基因
细胞
生物化学
亚细胞定位
野生型
核糖核酸
作者
Van Ngoc Tuyet Nguyen,Sunok Moon,You Jin Lim,Woonhee Baek,Kieu Thi Xuan Vo,Youngsang Yoo,Sung Chul Lee,Seok Hyun Eom,Sang‐Won Lee,Jong‐Seong Jeon,Ki‐Hong Jung
标识
DOI:10.1093/plphys/kiaf520
摘要
Hydroxycinnamate amides (HCAAs) represent a major class of phenylpropanoid metabolites prevalent throughout the plant kingdom, garnering significant interest due to their roles in various biological processes. In this study, we identified a rice (Oryza sativa) ATP-binding cassette (ABC) transporter OsABCG37 that influences the level of feruloylputrescine, a HCAA compound. Using the CRISPR/Cas9 system to mutate OsABCG37, we observed impaired development of lateral roots and root hairs. Interestingly, the loss of OsABCG37 function disrupted the emergence of lateral roots. Expression pattern analysis employing a reporter gene system showed that OsABCG37 is predominantly expressed in epidermal cells of the primary root at sites of lateral root emergence as well as in lateral roots and root hairs. The corresponding protein was located in the plasma membrane. RNA sequencing and HPLC/MS experiments revealed that the OsABCG37 mutation led to reduced levels of intracellular feruloylputrescine and cell wall-associated ferulic acid, the latter serving as an indirect indicator of wall-bound feruloylputrescine, compared to the wild type. Supplementing with exogenous feruloylputrescine partially rescued the defects in lateral root and root hair development caused by the OsABCG37 mutation. In addition to defects in root development, mutants of OsABCG37 were sensitive to biotic and abiotic stresses. Collectively, our findings suggest a role for the OsABCG37 transporter in regulating root development and stress resistance by affecting feruloylputrescine levels.
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