Research progress on the physiological and molecular mechanisms underlying soybean aluminum resistance

Jifu Li, Jing Tian, Min Zhou, Jiang Tian, Cuiyue Liang
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Abstract

Aluminum (Al) toxicity is a global agricultural problem affecting crop growth and yield in acid soils. Approximately 35% of soybean (Glycine max) cultivation areas worldwide consist of acidic soils, making Al stress a major constraint for soybean production. The physiological and molecular mechanisms by which soybeans cope with Al toxicity have been extensively studied. This review focuses on recent research into the physiological, molecular, and genetic basis of soybean Al-resistance. It also summarizes our understandings of the regulatory mechanisms involved in soybean responses to Al toxicity.

大豆抗铝生理和分子机制的研究进展
铝(Al)毒性是影响酸性土壤中作物生长和产量的全球性农业问题。全球约有 35% 的大豆(Glycine max)种植区为酸性土壤,这使得铝胁迫成为大豆生产的主要制约因素。人们对大豆应对铝毒性的生理和分子机制进行了广泛研究。本综述侧重于大豆抗铝性的生理、分子和遗传基础的最新研究。它还总结了我们对大豆对铝毒性反应所涉及的调控机制的理解。
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