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首页> 外文期刊>Environmental Science and Pollution Research >Copper-induced oxidative stress, initiation of antioxidants and phytoremediation potential of flax (Linum usitatissimum L.) seedlings grown under the mixing of two different soils of China
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Copper-induced oxidative stress, initiation of antioxidants and phytoremediation potential of flax (Linum usitatissimum L.) seedlings grown under the mixing of two different soils of China

机译:铜诱导的氧化应激,亚麻(Linum Usitatissimum L.)幼苗在两种不同土壤中生长的亚麻(Linum Usitatissimum L.)幼苗的抗氧化剂和植物修复潜力

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Flax (Linum usitatissimum L.), one of the oldest cultivated crops, continues to be widely grown for oil, fiber and food. Furthermore, the plants show a metal tolerance dependent on species so is ideal for research. Present study was conducted to find out the influence of copper (Cu) toxicity on plant biomass, growth, chlorophyll content, malondialdehyde (MDA) contents, proline production, antioxidative enzymes and metal up taken by L. usitatissimum from the soil grown under mixing of Cu-contaminated soil with natural soil by 0:1 (control), 1:0, 1:1, 1:2 and 1:4. Results revealed that, high concentration of Cu in the soil affected plant growth and development by reducing plant height, plant diameter and plant fresh and dry biomass and chlorophyll contents in the leaves compared with the control. Furthermore, Cu in excess causes generation of reactive oxygen species (ROS) such as superoxide radical (O-) and hydroxyl radicals (OH), which is manifested by high malondialdehyde (MDA) and proline contents also. The increasing activities of superoxidase dismutase (SOD) and peroxidase (POD) in the roots and leaves of L. usitatissimum are involved in the scavenging of ROS. Results also showed that L. usitatissimum also has capability to revoke large amount of Cu from the contaminated soil. As Cu concentration in the soil increases, the final uptake of Cu concentration by L. usitatissimum increases. Furthermore, the soil chemical parameters (pH, electrical conductivity and cation exchange capacity) were increasing to highest levels as the ratio of Cu concentration to the natural soil increases. Thus, Cu-contaminated soil is amended with the addition of natural soil significantly reduced plant growth and biomass, while L. usitatissimum is able to revoke large amount of Cu from the soil and could be grown as flaxseed and a potential candidate for phytoremediation of Cu.
机译:亚麻(Linum Usitatissimumlimumlimumlimumlimum L.最古老的栽培作物之一,仍然广泛种植油,纤维和食物。此外,植物显示依赖物种的金属耐受性,因此是研究的理想选择。进行了本研究,以了解铜(Cu)毒性对植物生物质,生长,叶绿素含量,丙氨酸产量(MDA)含量,脯氨酸生产,抗氧化酶和金属的影响,从而从混合下生长的土壤Cu污染土壤具有自然土壤0:1(对照),1:0,1:1,1:2和1:4。结果表明,与对照相比,通过减少植物高度,植物直径和植物新鲜干燥生物质和叶绿素含量,植物高度,植物直径和叶绿素含量,植物的植物生长和发育高浓度。此外,过量的Cu导致产生反应性氧(ROS),例如超氧化物自由基(O-)和羟基自由基(OH),其表现为高丙二醛(MDA)和脯氨酸含量。富氧化酶歧化酶(SOD)和过氧化物酶(POD)在L. usitatissimum的根和叶片中的越来越多的活性参与了ROS的清除。结果还表明,L. Usitatissimum还具有从受污染的土壤中撤销大量Cu的能力。随着土壤中的Cu浓度增加,L浓度的最终吸收L. Usitatisimumumum up。此外,随着Cu浓度与天然土壤的比例增加,土壤化学参数(pH值,电导率和阳离子交换能力)增加到最高水平。因此,通过加入天然土壤的植物生长和生物质的添加浓杂化的土壤进行修订,而L. Usitatissimum能够从土壤中撤销大量的Cu,并且可以作为亚麻籽和Cu植物植物修复的潜在候选者。

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