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Lead Cadmium and Zinc Phytotoxicity Alter DNA Methylation Levels to Confer Heavy Metal Tolerance in Wheat

机译:铅镉和锌的植物毒性改变小麦的DNA甲基化水平赋予小麦重金属耐受性

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摘要

Being a staple food, wheat (Triticum aestivum) nutritionally fulfills all requirements of human health and also serves as a significant link in the food chain for the ingestion of pollutants by humans and animals. Therefore, the presence of the heavy metals such as lead (Pb) and cadmium (Cd) in soil is not only responsible for the reduction of wheat crop yield but also the potential threat for human and animal health. However, the link between DNA methylation and heavy metal stress tolerance in wheat has not been investigated yet. In this study, eight high yielding wheat varieties were screened based on their phenotype in response to Pb stress. Out of these, Pirsabak 2004 and Fakhar-e-sarhad were identified as Pb resistant and sensitive varieties, respectively. In addition, Pirsabak 2004 and Fakhar-e-sarhad varieties were also found resistant and sensitive to Cd and Zinc (Zn) stress, respectively. Antioxidant activity was decreased in Fakhar-e-sarhad compared with control in response to Pb/Cd/Zn stresses, but Fakhar-e-sarhad and Pirsabak 2004 accumulated similar levels of Pb, Cd and Zn in their roots. The expression of Heavy Metal ATPase 2 (TaHMA2) and ATP-Binding Cassette (TaABCC2/3/4) metal detoxification transporters are significantly upregulated in Pirsabak 2004 compared with Fakhar-e-sarhad and non-treated controls in response to Pb, Cd and Zn metal stresses. Consistent with upregulation of metal detoxification transporters, CG DNA hypomethylation was also found at the promoter region of these transporters in Pirsabak 2004 compared with Fakhar-e-sarhad and non-treated control, which indicates that DNA methylation regulates the expression of metal detoxification transporters to confer resistance against metal toxicity in wheat. This study recommends the farmers to cultivate Pirsabak 2004 variety in metal contaminated soils and also highlights that DNA methylation is associated with metal stress tolerance in wheat.
机译:作为主食,小麦(Triticum aestivum)在营养上可以满足人类健康的所有要求,并且在食物链中也可作为人类和动物摄入污染物的重要环节。因此,土壤中铅(Pb)和镉(Cd)等重金属的存在不仅导致小麦作物减产,而且对人类和动物健康构成潜在威胁。但是,尚未研究小麦中DNA甲基化与重金属胁迫耐受性之间的联系。在这项研究中,根据表型响应铅胁迫,筛选了八个高产小麦品种。其中,Pirsabak 2004和Fakhar-e-sarhad被分别确定为抗Pb和敏感品种。此外,还发现Pirsabak 2004和Fakhar-e-sarhad变种分别对Cd和Zinc(Zn)胁迫具有抗性和敏感性。与对照相比,Fakhar-e-sarhad的抗氧化活性有所下降,但响应Pb / Cd / Zn胁迫,但Fakhar-e-sarhad和Pirsabak 2004在其根部积累了相似水平的Pb,Cd和Zn。与Fakhar-e-sarhad和未经处理的对照相比,重金属ATPase 2(TaHMA2)和ATP结合盒(TaABCC2 / 3/4)金属解毒转运蛋白的表达明显上调,对Pb,Cd和Pb的响应锌金属应力。与金属解毒转运蛋白的上调一致,与Fakhar-e-sarhad和未经处理的对照相比,在Pirsabak 2004的这些转运蛋白的启动子区域还发现了CG DNA的低甲基化,这表明DNA甲基化调节了金属解毒转运蛋白的表达。赋予小麦抗金属毒性的能力。这项研究建议农民在金属污染的土壤上种植Pirsabak 2004品种,并强调DNA甲基化与小麦的金属胁迫耐受性有关。

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