胚根
发芽
盐(化学)
流出
生理盐水
盐度
运输机
胚胎
钠
盐腺
化学
植物
园艺
生物
细胞生物学
基因
生物化学
物理化学
生态学
有机化学
内分泌学
作者
Limin Wang,Yanyan Wang,Pan Yin,Caifu Jiang,Ming Zhang
标识
DOI:10.1016/j.ncrops.2024.100024
摘要
Elevated sodium (Na+) in saline farmlands adversely affect crops, notably by inhibiting seed germination. Given the importance of High-Affinity K+ Transporter (HAK) family Na+ transporters in plant salt tolerance and ZmHAK4 role in maize salt tolerance, our study focuses on characterizing HAK transporters related to ZmHAK4 in maize's salt stress response. We found that ZmHAK17 is vital for promoting seed germination under saline conditions. Expressed mainly in the germinating embryo's radicle, ZmHAK17, encodes a Na+ transporter located in the plasma membrane. Increased ZmHAK17 transcript levels under salt stress facilitate Na+ efflux from the radicle, preventing Na+ accumulation in the embryo and reducing salt stress effects on germination. Mutants lacking ZmHAK17 exhibit salt-sensitive germination. This study highlights ZmHAK17 as a key transporter enhancing maize germination in saline conditions, deepening our understanding of HAK family Na+ transporters' role in salt tolerance and offering a new target gene for salt-tolerant maize breeding.
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