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Physiological response of Cistus salviifolius L. to high arsenic concentrations

机译:Cistus Salviifolius L.高砷浓度的生理反应

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Arsenic is a trace element found in the environment which can be particularly toxic to living organisms. However, some plant species such as those of the genusCistusare able to grow in soils with high As concentrations and could be used in the sustainable rehabilitation of mining areas through phytostabilization. In this work, the growth and the physiological response ofCistus salviifoliusL. to As-induced oxidative stress at several concentrations (reaching 30 mg L-1) in an hydroponic system were evaluated for 30 days. Several growth parameters, chlorophyll content, chemical composition, one indicator of oxidative stress (H2O2) and two of the major antioxidative metabolites (ascorbate and glutathione) were analysed. The toxic effect of As was better perceived in the plants submitted to treatments with concentrations of 20 and 30 mg As L-1. Plants subjected to these treatments had higher concentration of As in roots and shoots. The concentrations of Ca, Mg, K and Fe in the plants as well as a large part of the evaluated growth parameters were also affected. Arsenic did not interfere with the ability of the plant to perform photosynthesis, as there were no significant differences in the contents of chlorophylla,band total between the different treatments. Plants from all treatments accumulated higher amount of As in roots than in shoots, and it was also in the roots that the concentrations of H2O2, AsA and GSH were higher.Cistus salviifoliusshowed high tolerance to As up to the concentration of 5 mg L-1, which makes it a species with high potential to be used in the phytostabilization of soils contaminated with As and presenting high concentrations of the element in the soil solution.
机译:砷是一种在环境中发现的痕量元素,这可能对生物体特别毒性。然而,一些植物种类,例如能够在高度浓度的土壤中生长的植物种类,并且可以通过植物化植物化用于采矿区的可持续康复。在这项工作中,增长和生理反应肠萨尔维糖素。在水培系统中以几种浓度(达到30mg L-1)的氧化应激进行评价30天。分析了几种生长参数,叶绿素含量,化学成分,氧化应激(H2O2)的一种指示剂和两种主要抗氧化代谢物(抗坏血酸和谷胱甘肽)。如将浓度为20和30mg作为L-1的植物中的植物更好地感知的毒性效果。受这些治疗的植物具有更高的根和芽浓度。植物中的Ca,Mg,K和Fe的浓度以及大部分评估的生长参数也受到影响。砷没有干扰植物进行光合作用的能力,因为叶绿素的含量没有显着差异,不同治疗之间的乐队。来自所有治疗的植物积累了较高的根,而不是在芽中,并且还在根部,即H 2 O 2,ASA和GSH的浓度较高。肠道SalviifoliusShowed高耐受性,最高耐受5mg L-1的浓度(这使其成为一种具有高潜力的物种,用于污染的土壤植物植物污染,并呈现在土壤溶液中的高浓度的元素。

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