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首页> 外文期刊>Environmental Science and Pollution Research >Selenium mitigates cadmium toxicity by preventing oxidative stress and enhancing photosynthesis and micronutrient availability on radish (Raphanus sativus L.) cv. Cherry Belle
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Selenium mitigates cadmium toxicity by preventing oxidative stress and enhancing photosynthesis and micronutrient availability on radish (Raphanus sativus L.) cv. Cherry Belle

机译:通过防止氧化应激和增强萝卜(Raphanus Sativus L.)Cv的光合作用和微量营养素可用性来减轻镉的毒性。 樱桃百灵鱼

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We aimed to examine the effects of selenium on the tolerance of radish plants CV. Cherri Belle under cadmium phytotoxicity. The biomass accumulation was drastically decreased under Cd toxicity and the supplementary Se maintained the biomass acquisition under Cd pressure. The chlorophyll index (SPAD), PSII efficiency (Fv/Fm), and PSII quantum yield (ΦPSII) were declined in response to Cd treatment, while Se nutrition improved these variables in a dose-dependent manner. The highest H2O2 and MDA contents were observed in the plants fed with 10?mg?1?L Cd. The Cd stress resulted in a considerable decline in the activities of GPX, CAT, and APX antioxidant enzymes, while Se supplementation increased their activities in the Cd-treated plants. Based on the mineral analyses, no Cd was traced in the control plants, while the Cd concentration in both roots and leaves of the Cd-stressed radish plants increased with increasing the supplemented Cd levels. Compared with plants solely treated with 10?mg?L?1 Cd, Se nutrition declined the Cd absorption in roots and in leaves. The concentration of evaluated micronutrients including Fe, Mn, Cu, and Zn tended to decrease in the Cd-imposed plants in comparison with control plants. Se nutrition of both stressed and non-stressed radish plants increased the concentrations of the studied microelements, except for Zn in which the individual use of Se led to a decrease in the Zn content. Significant positive and negative correlation values were found among the studied traits and the principle component analysis (PCA) biplot and Ward dendrogram confirmed the results of the correlation analysis. Se proved to be efficient in the alleviation of Cd-triggered deleterious effects by improving biomass acquisition, enhancing chlorophyll biosynthesis and fluorescence, and increasing micronutrient uptake in a dose-dependent manner. Furthermore, the Se alleviation mechanism under Cd stress was also connected with the activation of enzymatic antioxidative protection system as well as with decreasing Cd uptake, transport, and distribution in radish leaves. Altogether, our research strongly suggests the implementation of Se in the growth medium to enhance the tolerance of radish plants under Cd stress.
机译:我们旨在研究硒对萝卜植物CV耐受性的影响。 Cherri Belle在植物植物毒素下。在Cd毒性下,生物质积累急剧下降,补充硒在CD压力下保持生物质采集。叶绿素指数(SPAD),PSII效率(FV / FM)和PSII量子产率(φPSII)响应于CD处理而下降,而SE营养以剂量依赖性方式改善这些变量。在饲喂10μmg≤1≤1℃的植物中观察到最高的H 2 O 2和MDA含量。 CD胁迫导致GPX,CAT和APX抗氧化酶的活性相当下降,而SE补充在CD处理植物中增加了它们的活性。基于矿物分析,在对照植物中没有追踪CD,而CD胁迫萝卜植物的根部和叶片中的CD浓度随着补充的CD水平的增加而增加。与植物单独用10毫克治疗(毫克)相比?1℃,SE营养在根和叶中的CD吸收下降。与对照植物相比,评估的微量营养器的浓度倾向于降低CD施加的植物。 SE营养的胁迫和非胁迫萝卜植物增加了所研究的微量元素的浓度,除了Zn,其中单独使用Se导致Zn含量的降低。显著正,负相关值所研究的特点和主成分分析(PCA)双标图中被发现和Ward聚类分析证实了相关性分析的结果。通过改善生物质采集,增强叶绿素生物合成和荧光,增加微量营养素的方式,证明在减轻CD引发的有害效果方面是有效的。此外,CD胁迫下的SE缓解机制也与酶促抗氧化保护系统的活化以及萝卜叶中的CD吸收,运输和分布的激活相连。完全,我们的研究强烈建议在生长培养基中实施SE,以提高CD胁迫下萝卜植物的耐受性。

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