Unfolding molecular switches for salt stress resilience in soybean: recent advances and prospects for salt-tolerant smart plant production

盐(化学) 盐度 生物 生物技术 农学 化学 生态学 物理化学
作者
Feng Chen,Hongtao Gao,Yonggang Zhou,Yan Jing,Senquan Li,Yan Zhao,Keheng Xu,Fangxue Zhou,Wenping Zhang,Xinquan Yang,Muhammad Azhar Hussain,Haiyan Li
出处
期刊:Frontiers in Plant Science [Frontiers Media SA]
卷期号:14 被引量:26
标识
DOI:10.3389/fpls.2023.1162014
摘要

The increasing sodium salts (NaCl, NaHCO3, NaSO4 etc.) in agricultural soil is a serious global concern for sustainable agricultural production and food security. Soybean is an important food crop, and their cultivation is severely challenged by high salt concentration in soils. Classical transgenic and innovative breeding technologies are immediately needed to engineer salt tolerant soybean plants. Additionally, unfolding the molecular switches and the key components of the soybean salt tolerance network are crucial for soybean salt tolerance improvement. Here we review our understandings of the core salt stress response mechanism in soybean. Recent findings described that salt stress sensing, signalling, ionic homeostasis (Na + /K + ) and osmotic stress adjustment might be important in regulating the soybean salinity stress response. We also evaluated the importance of antiporters and transporters such as Arabidopsis K + Transporter 1 ( AKT1 ) potassium channel and the impact of epigenetic modification on soybean salt tolerance. We also review key phytohormones, and osmo-protectants and their role in salt tolerance in soybean. In addition, we discuss the progress of omics technologies for identifying salt stress responsive molecular switches and their targeted engineering for salt tolerance in soybean. This review summarizes recent progress in soybean salt stress functional genomics and way forward for molecular breeding for developing salt-tolerant soybean plant.
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