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Effect of antimony in soils of an Sb mine on the photosynthetic pigments and antioxidant system of Dittrichia viscosa leaves

机译:锑矿对Dittrichia缺陷叶片光合色素和抗氧化体系的影响

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摘要

Antimony is a toxic element whose concentration in soil and water has been rising due to anthropogenic activities. This study focuses on its accumulation in leaves ofDittrichia viscosagrowing in soils of an abandoned Sb mine, and the effect on oxidant/antioxidant systems and photosynthetic efficiency. The results showed leaves to have a high Sb accumulation capacity. The amount of total chlorophyll decreased depending on Sb concentration and of carotenoids increased slightly, with a consequent increase in carotenoid/chlorophyll ratio. Photosynthetic efficiency was unaffected. The amount of O2.-rose, although there was no increase in cell membrane damage, with lipid peroxidation levels being similar to normal. This response may be due to considerable increases that were observed in total phenolics, PPO activity, and enzymatic antioxidant system. SOD, POX, and DHAR activities increased in response to increased Sb amounts in leaves. The ascorbate/glutathione cycle was also affected, with strong increases observed in all of its components, and consequent increases in total contents of the ascorbate and glutathione pools. However, the ratio between reduced and oxidized forms declined, reflecting an imbalance between the two, especially that between GSH and GSSG. Efficient detoxification of Sb may take place either through increases in phenolics, carotenoids, and components of the glutathione-ascorbate cycle or through the enzymatic antioxidant system. SinceDittrichia viscosaaccumulates large amounts of Sb without suffering oxidative damage, it could be used for phytoremediation.
机译:锑是一种有毒元素,其在土壤和水中浓度由于人为活动而上升。本研究重点介绍其在废弃的SB矿山土壤中的叶片叶片中的积累,以及对氧化剂/抗氧化系统和光合效率的影响。结果表明,叶子具有高的SB累积能力。根据Sb浓度和类胡萝卜素略微增加,总叶绿素的量减少,因此类胡萝卜素/叶绿素比例增加。光合效率不受影响。 o2.玫瑰的量,尽管细胞膜损伤没有增加,但脂质过氧化水平类似于正常。这种反应可能是由于在总酚类,PPO活性和酶促抗氧化系统中观察到的相当大增加。 SOD,POX和DHAR活动响应于叶中的SB量增加而增加。抗坏血酸/谷胱甘肽循环也受到影响,在其所有组分中观察到的强烈增加,随之而来的抗坏血酸和谷胱甘肽池的总含量增加。然而,减少和氧化形式之间的比率下降,反映了两者之间的不平衡,特别是GSH和GSSG之间的不平衡。通过酚醛化,类胡萝卜素和谷胱甘肽抗坏血酸循环或通过酶促抗氧化系统的增加,可以通过增加的Sb的有效解毒。真主的粘度粘膜累积大量的Sb而不患氧化损伤,可用于植物修复。

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