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Genotypic dependent effect of exogenous glutathione on Cd-induced changes in cadmium and mineral uptake and accumulation in rice seedlings (Oryza sativa)

机译:外源谷胱甘肽对水稻诱导镉的镉变化和矿物质吸收与积累的基因型依赖性效应

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A hydroponic experiment was performed using Cd-sensitive (cv. Xiushui63) and tolerant (cv. Bing97252) rice cultivars to evaluate the difference in their response to Cd toxicity in the presence of exogenous glutathione (GSH). The results showed that Cd stress (5 and 50 μmol/l Cd) decreased plant fresh weight, contents of chlorophyll a, b and carotenoids, with Cd-sensitive genotype being more severely affected. Cd significantly decreased concentration and accumulation of Mn in roots/shoots, and Zn in shoots, but increased Cu concentration in roots/shoots. There was a significantly negative correlation between shoot Zn concentrations and shoot/root Cd concentrations, and between root Cd and Mn concentrations. Exogenous GSH significantly alleviated Cd-induced growth inhibition and markedly reduced Cd uptake in both genotypes. In addition, GSH induced a Cd-dose- and genotype-dependent effects on Cd-induced changes in mineral concentration/accumulation and chlorophyll content in rice seedlings. GSH alleviated Cd-induced decrease in root/shoot Zn and Ca concentrations and accumulation of Xiushui 63, while increased root Ca and Mn concentrations in Bing 97252 under 5 µmol/l Cd stress. In addition, GSH also significantly enhanced chlorophyll a and b contents of Bing 97252 in both 5 and 50 µmol/l Cd, and Xiushui 63 in 50 µmol Cd.
机译:使用对Cd敏感的Cv。Xiushui63和对Cd耐受的Cv。Bing97252水稻进行水培试验,以评估在外源谷胱甘肽(GSH)存在下它们对Cd毒性反应的差异。结果表明,镉胁迫(5和50μmol/ l Cd)降低了植物的鲜重,叶绿素a,b和类胡萝卜素的含量,对Cd敏感基因型的影响更大。 Cd显着降低了根/茎中Mn的浓度和积累,而芽中Zn却显着降低,但根/茎中的Cu浓度增加。枝条锌浓度与枝条/根部Cd浓度之间以及根部Cd和Mn浓度之间显着负相关。外源谷胱甘肽显着减轻了镉诱导的生长抑制,并显着降低了两种基因型对镉的吸收。此外,谷胱甘肽对镉诱导的水稻幼苗矿物质浓度/积累和叶绿素含量变化的影响与镉的剂量和基因型有关。在5 µmol / l的Cd胁迫下,谷胱甘肽可以缓解Cd诱导的根/茎部Zn和Ca浓度以及秀水63积累的降低,而Bing 97252中的根Ca和Mn浓度升高。此外,谷胱甘肽还显着提高了5和50 µmol / l Cd中Bing 97252的叶绿素a和b含量,以及50 µmol Cd中的秀水63的叶绿素a和b含量。

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