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Transporters, chaperones, and P-type ATPases controlling grapevine copper homeostasis

机译:转运蛋白,伴侣蛋白和P型ATP酶控制葡萄铜稳态

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摘要

With more copper and copper-containing compounds used as bactericides and fungicides in viticulture, copper homeostasis in grapevine (Vitis) has become one of the serious environmental crises with great risk. To better understand the regulation of Cu homeostasis in grapevine, grapevine seedlings cultured in vitro with different levels of Cu were utilized to investigate the tolerance mechanisms of grapevine responding to copper availability at physiological and molecular levels. The results indicated that Cu contents in roots and leaves arose with increasing levels of Cu application. With copper concentration increasing, malondialdehyde (MDA) content increased in roots and leaves and the activities of superoxide dismutase (SOD), peroxidase (POD), and catalase (CAT) increased to protect the plant itself from damage. The expression patterns of 19 genes, encoding transporters, chaperones, and P-type ATPases involved in copper homeostasis in root and leaf of grapevine seedling under various levels of Cu2+ were further analyzed. The expression patterns indicated that CTr1, CTr2, and CTr8 transporters were significantly upregulated in response both to Cu excess and deficiency. ZIP2 was downregulated in response to Cu excess and upregulated under Cu-deficient conditions, while ZIP4 had an opposite expression pattern under similar conditions. The expression of chaperones and P-type ATPases in response to Cu availability in grapevine were also briefly studied.
机译:随着越来越多的铜和含铜化合物在葡萄栽培中用作杀菌剂和杀真菌剂,葡萄(葡萄)中的铜稳态已成为严重的环境危机之一,且具有很大的风险。为了更好地了解葡萄中铜稳态的调控,利用体外培养的不同铜含量的葡萄幼苗在生理和分子水平上研究了葡萄对铜有效性的耐受机制。结果表明,根和叶中的铜含量随铜水平的增加而升高。随着铜浓度的增加,根和叶中丙二醛(MDA)含量增加,并且超氧化物歧化酶(SOD),过氧化物酶(POD)和过氧化氢酶(CAT)的活性增加,以保护植物本身不受损害。进一步分析了不同Cu2 +水平下葡萄幼苗根和叶中铜稳态的19个编码转运蛋白,伴侣蛋白和P型ATP酶的基因的表达模式。表达模式表明响应铜过量和缺乏,CTr1,CTr2和CTr8转运蛋白均显着上调。 ZIP2响应于Cu过量而下调,而在Cu缺乏的条件下上调,而ZIP4在相似的条件下具有相反的表达模式。还简要研究了响应Cu在葡萄中的利用率的伴侣蛋白和P型ATP酶的表达。

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