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首页> 外文期刊>Environmental Science and Pollution Research >Phytoremediation of Mn-contaminated paddy soil by two hyperaccumulators (Phytolacca americana and Polygonum hydropiper) aided with citric acid
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Phytoremediation of Mn-contaminated paddy soil by two hyperaccumulators (Phytolacca americana and Polygonum hydropiper) aided with citric acid

机译:用两个超累积器(Phytolacca Americana和Polygonum Roverpiper)辅助柠檬酸的植物污染水稻土的植物修复

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The purpose of this study was to investigate the phytoremediation potential of two hyperaccumulator plants, Phytolacca americana L. and Polygonum hydropiper L., on manganese-contaminated paddy soils. The biomass growth, Mn concentrations in plant tissues, and potential Mn removal efficiency from soils of these two plants were studied with citric acid, and the mechanisms of citric acid on these two plants were analyzed by examining the root activity, the activities of superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT) in leaves, as well as the concentrations of O-2(-) and H2O2 in leaves. The results showed that the biomass of these two plants were both promoted under low level of citric acid (3mmolkg(-1)). The concentration of Mn in the plants and the amount of Mn removed from the soil by the plants through harvesting were enhanced at low and intermediate (10mmolkg(-1)) citric acid application levels. The results also showed that root activity was enhanced at the low citric acid level and significantly inhibited under the intermediate and high levels (15mmolkg(-1)), which indicates the facilitative function of the low level of citric acid and the inhibitive function of the high level of citric acid application on plant biomass growth. Under the low and intermediate levels of citric acid application, O-2(-) in the plant leaves increased sharply, and the SOD, POD, and CAT activities also increased sharply, which made the level of H2O2 very similar to that of the control, ensuring the health of the plants. At the high level of citric acid application, however, the O-2(-) continued to rise sharply, while the activity of the three antioxidant enzymes declined sharply, causing the concentration of hydrogen peroxide to be much higher than that in the control, thus endangering the plants. The present study shows the potential of P. hydropiper for use in the phytoremediation of soil contaminated with a relatively low level of manganese.
机译:本研究的目的是研究两种超重植物,植物植物植物,植物污染的水稻土壤的植物修复潜力,Phytolacca Americana L.和Polygonum Datchiper L.。用柠檬酸研究了植物组织中的生物质生长,植物组织中的浓度,以及来自这两种植物的土壤的潜在的Mn去除效率,并通过检查根活,超氧化物歧化酶的活性分析这两种植物的柠檬酸机制(SOD),过氧化物酶(POD)和叶中的过氧化氢酶(猫),以及叶中O-2( - )和H 2 O 2的浓度。结果表明,这两种植物的生物质均在低水平的柠檬酸(3mmolkg(-1))下促进。通过收获,通过收获植物中植物中的Mn的浓度和从土壤中除去的Mn的量(10mmolkg(-1))柠檬酸施用水平。结果还表明,在低柠檬酸水平下并在中间体和高水平下显着抑制了根系活性(15mmolkg(-1)),这表明柠檬酸低水平的促进功能和抑制函数高水平的柠檬酸对植物生物质生长的应用。在柠檬酸应用的低和中间水平下,植物中的O-2( - )叶片急剧增加,SOD,豆荚和猫活动也急剧增加,这使得H2O2的水平与控制相似。 ,确保植物的健康。然而,在高水平的柠檬酸应用中,O-2( - )急剧上升,而三种抗氧化酶的活性急剧下降,导致过氧化氢的浓度远高于对照中的浓度,从而危及植物。本研究表明,用于污染的土壤植物修复的P. Datchiper的潜力。

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