Integrated physio-biochemical and transcriptomic analysis revealed mechanism underlying of Si-mediated alleviation to cadmium toxicity in wheat

毒性 光合作用 活性氧 抗氧化剂 氧化应激 化学 谷胱甘肽 金属毒性 开枪 生物化学 植物螯合素 生物 植物 有机化学
作者
Haitao Liu,Qiujuan Jiao,Lina Fan,Ying Jiang,Mohammed Nasser Alyemeni,Parvaiz Ahmad,Yinglong Chen,Mo Zhu,Haiping Liu,Ying Zhao,Fang Liu,Shi‐Liang Liu,Gezi Li
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:452: 131366-131366 被引量:119
标识
DOI:10.1016/j.jhazmat.2023.131366
摘要

Cadmium (Cd) contamination has resulted in serious reduction of crop yields. Silicon (Si), as a beneficial element, regulates plant growth to heavy metal toxicity mainly through reducing metal uptake and protecting plants from oxidative injury. However, the molecular mechanism underlying Si-mediated Cd toxicity in wheat has not been well understood. This study aimed to reveal the beneficial role of Si (1 mM) in alleviating Cd-induced toxicity in wheat (Triticum aestivum) seedlings. The results showed that exogenous supply of Si decreased Cd concentration by 67.45% (root) and 70.34% (shoot), and maintained ionic homeostasis through the function of important transporters, such as Lsi, ZIP, Nramp5 and HIPP. Si ameliorated Cd-induced photosynthetic performance inhibition through up-regulating photosynthesis-related genes and light harvesting-related genes. Si minimized Cd-induced oxidative stress by decreasing MDA contents by 46.62% (leaf) and 75.09% (root), and helped re-establish redox homeostasis by regulating antioxidant enzymes activities, AsA-GSH cycle and expression of relevant genes through signal transduction pathway. The results revealed molecular mechanism of Si-mediated wheat tolerance to Cd toxicity. Si fertilizer is suggested to be applied in Cd contaminated soil for food safety production as a beneficial and eco-friendly element.
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