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综合生理生化和转录组分析揭示了硅介导减轻小麦镉毒性的潜在机制。

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

作者信息

Liu Haitao, Jiao Qiujuan, Fan Lina, Jiang Ying, Alyemeni Mohammed Nasser, Ahmad Parvaiz, Chen Yinglong, Zhu Mo, Liu Haiping, Zhao Ying, Liu Fang, Liu Shiliang, Li Gezi

机构信息

College of Resources and Environment, Henan Agricultural University, Zhengzhou 450046, PR China.

Botany and Microbiology Department, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

J Hazard Mater. 2023 Jun 15;452:131366. doi: 10.1016/j.jhazmat.2023.131366. Epub 2023 Apr 5.

Abstract

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.

摘要

镉(Cd)污染已导致作物产量严重下降。硅(Si)作为一种有益元素,主要通过减少金属吸收和保护植物免受氧化损伤来调节植物对重金属毒性的生长反应。然而,硅介导的小麦镉毒性的分子机制尚未完全清楚。本研究旨在揭示硅(1 mM)在缓解小麦(Triticum aestivum)幼苗镉诱导毒性中的有益作用。结果表明,外源供应硅使镉浓度在根中降低了67.45%,在地上部降低了70.34%,并通过Lsi、ZIP、Nramp5和HIPP等重要转运蛋白的功能维持离子稳态。硅通过上调光合作用相关基因和光捕获相关基因,改善了镉诱导的光合性能抑制。硅通过使叶片中丙二醛含量降低46.62%,根中降低75.09%,将镉诱导的氧化应激降至最低,并通过信号转导途径调节抗氧化酶活性、AsA-GSH循环和相关基因的表达,帮助重建氧化还原稳态。结果揭示了硅介导小麦对镉毒性耐受性的分子机制。建议在镉污染土壤中施用硅肥,作为一种有益且环保的元素用于食品安全生产。

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