内胚层
质外体
蒸腾作用
拟南芥
植物
盐(化学)
开枪
生物
突变体
细胞生物学
生物物理学
化学
光合作用
生物化学
细胞壁
基因
物理化学
作者
Yanyan Wang,Yibo Cao,Xiaoyan Liang,Junhong Zhuang,Xiangfeng Wang,Feng Qin,Caifu Jiang
标识
DOI:10.1038/s41467-022-29809-0
摘要
Plant salt-stress response involves complex physiological processes. Previous studies have shown that some factors promote salt tolerance only under high transpiring condition, thus mediating transpiration-dependent salt tolerance (TDST). However, the mechanism underlying crop TDST remains largely unknown. Here, we report that ZmSTL1 (Salt-Tolerant Locus 1) confers natural variation of TDST in maize. ZmSTL1 encodes a dirigent protein (termed ZmESBL) localized to the Casparian strip (CS) domain. Mutants lacking ZmESBL display impaired lignin deposition at endodermal CS domain which leads to a defective CS barrier. Under salt condition, mutation of ZmESBL increases the apoplastic transport of Na+ across the endodermis, and then increases the root-to-shoot delivery of Na+ via transpiration flow, thereby leading to a transpiration-dependent salt hypersensitivity. Moreover, we show that the ortholog of ZmESBL also mediates CS development and TDST in Arabidopsis. Our study suggests that modification of CS barrier may provide an approach for developing salt-tolerant crops.
科研通智能强力驱动
Strongly Powered by AbleSci AI