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首页> 外文期刊>Journal of Plant Nutrition >Investigation of the changes in low molecular weight organic acids and other physiological parameters by nitric oxide application in two wheat cultivars exposed to boron stress
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Investigation of the changes in low molecular weight organic acids and other physiological parameters by nitric oxide application in two wheat cultivars exposed to boron stress

机译:在硼胁迫下,通过一氧化氮应用对低分子量有机酸和其他生理参数的变化研究

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Boron (B) is one of the essential nutrients for the growth of plants, but its high concentrations are toxic for plants. Thus, B toxicity is a big challenge in crop cultivation. Nitric oxide (NO) is a small signaling molecule that has cytoprotective roles in plants. We investigated whether exogenous sodium nitroprusside (SNP), which is a NO donor, may succeed to alleviate B-induced toxicity in wheat cultivars. Seedlings were grown for 10days in a growth chamber at 25 degrees C with 16hr light-8hr dark photo cycle. After high B application, the effects of SNP on growth parameters; electrolyte leakage (EL); changes in reactive oxygen species [contents of hydrogen peroxide (H2O2), malondialdehyde (MDA), and proline]; the activities of antioxidant enzymes [glutathione peroxidase (GSHPx), glutathione reductase (GR), and glutathione S-transferase (GST)] and nitrate reductase (NR); and low molecular weight organic acid (LMWOAs) contents and also chlorophyll and total carotenoid contents were investigated in both shoots and roots of two different wheat cultivars. All experiments were carried out in triplicate. 0.2mM SNP application ameliorated the chlorophyll and total carotenoid contents, and growth parameters such as shoot length, root length, and fresh weight in both wheat cultivars exposed to B stress. SNP reduced the B-induced lipid peroxidation, EL, and proline and H2O2 content in wheat cultivars. SNP application also increased the activities of NR and antioxidant enzymes, including GSHPx, GR, and GST in wheat cultivars exposed to B toxicity. All of the tested LMWOAs including succinic, propionic, butyric, oxalic, formic, malic, malonic, and benzoic acids were increased by SNP treatment in the shoots and roots of both wheat cultivars exposed to B toxicity. In conclusion, results obtained from this study have demonstrated that interactive effects of SNP with B considerably reduced the toxic effects of B in wheat cultivars.
机译:硼(B)是植物生长的基本营养素之一,但其高浓度对植物有毒。因此,B毒性是作物培养的重要挑战。一氧化氮(NO)是植物中具有细胞保护作用的小信号分子。我们调查了是硝普钠(SNP)的外源性硝酸钠(SNP),这可能成功地缓解小麦品种中的B诱导的毒性。幼苗在25℃下在生长室中生长10天,具有16小时光-8Hr暗照片循环。高B施用后,SNP对生长参数的影响;电解质泄漏(EL);活性氧物质的变化[过氧化氢含量(H2O2),丙二醛(MDA)和脯氨酸];抗氧化酶[谷胱甘肽过氧化物酶(GSHPX),谷胱甘肽还原酶(GR)和谷胱甘肽S转移酶(GST)]和硝酸还原酶(NR)的活性;在两种不同小麦品种的芽和根中,研究了低分子量有机酸(LMWOAs)含量和叶绿素和总类胡萝卜素内容物。所有实验一式三份进行。 0.2mm SNP申请改善了叶绿素和总类胡萝卜素内容物,以及在暴露于B胁迫下的小麦品种中的生长参数,如枝条长度,根部长度和新鲜重量。 SNP在小麦品种中降低了B诱导的脂质过氧化,EL和脯氨酸和H2O2含量。 SNP应用还增加了NR和抗氧化剂酶的活性,包括暴露于B毒性的小麦品种的GSHPX,GR和GST。所有测试的LMWOA都是琥珀酸,丙种,丁基,草原,甲状腺,麦芽,丙酸,麦芽和苯甲酸在暴露于B毒性的芽和根部的芽和根部的芽中增加。总之,从该研究获得的结果表明,SNP与B的交互式效应显着降低了小麦品种中B的毒性作用。

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