首页> 外文期刊>Journal of Environmental Engineering >Phosphorus Supplementation Alleviation of the Cadmium-Induced Toxicity by Modulating Oxidative Stress Mechanisms in Vetiver Grass [Chrysopogon zizanioides (L.) Roberty]
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Phosphorus Supplementation Alleviation of the Cadmium-Induced Toxicity by Modulating Oxidative Stress Mechanisms in Vetiver Grass [Chrysopogon zizanioides (L.) Roberty]

机译:通过调节香根草的氧化应激机制,减轻磷对镉的毒害作用[Chrysopogon zizanioides(L.)Roberty]

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The present study describes the potential role of additional phosphorus (P) on alleviating cadmium (Cd)-induced toxicity in vetiver plants. The plant growth was significantly affected at 50mgL-1 Cd treatment compared to the control, while it increased by 13% with addition of P in the medium when compared with Cd treatment. Accumulation of Cd content in plants showed positive correlation with Cd and Cd+P combination exposure, whereas it was slightly decreased at higher doses of Cd+P combination treatments in roots compared to the shoot exposed to Cd. A decreased level of photosynthetic pigments was noticed with increasing the Cd concentrations, but it was slightly enhanced with Cd and P combination treatments over Cd treatment. Both hydrogen peroxide (H2O2) and malondialhyde (MDA) contents were found to be increased with increasing Cd dose. The antioxidative enzymes such as superoxide dismutase (SOD), catalase (CAT), and peroxidase (POX) activities were found to be increased at lower doses of Cd exposure, while they were slightly decreased at higher doses of Cd treatment. The ameliorating effect of P was confirmed by reduction of H2O2, MDA contents, and antioxidative enzyme activities in shoot and root tissues. Isozyme banding pattern revealed the appearance of additional isoforms of SOD, CAT, and POX in leaf tissues grown in Cd+P combination. These results together suggested that the P amendment with Cd may decrease the Cd-induced toxicity that could promote seedlings growth. The present protocol could be considered as novel technology for alleviation of heavy metal stress-induced toxicity in plants including Cd ions.
机译:本研究描述了额外的磷(P)缓解香根草植物中镉(Cd)诱导的毒性的潜在作用。与对照相比,在50mgL-1 Cd处理下,植物生长受到显着影响,而在培养基中添加P则使植物生长增加13%。植物中Cd含量的累积与Cd和Cd + P组合暴露呈正相关,而与Cd暴露的芽相比,在更高剂量的Cd + P组合处理中根部其积累量略有下降。随着Cd浓度的增加,光合色素的含量降低,但与Cd处理相比,Cd和P组合处理略有增强。发现过氧化氢(H2O2)和丙二醛(MDA)的含量均随Cd剂量的增加而增加。发现在低剂量的Cd暴露下,抗氧化酶,如超氧化物歧化酶(SOD),过氧化氢酶(CAT)和过氧化物酶(POX)的活性增加,而在高剂量的Cd处理下,其活性略有下降。通过减少芽和根组织中的过氧化氢,MDA含量以及抗氧化酶活性,可以确认P的改善作用。同工酶谱带模式揭示了在Cd + P组合中生长的叶片组织中SOD,CAT和POX的其他同工型的出现。这些结果共同表明,Cd对P的修饰可以降低Cd诱导的毒性,从而促进幼苗生长。本协议可以被视为减轻包括Cd离子在内的植物中重金属胁迫诱导的毒性的新技术。

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