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首页> 外文期刊>The Science of the Total Environment >Phytoextraction potential of Pteris vittata L. co-planted with woody species for As, Cd, Pb and Zn in contaminated soil
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Phytoextraction potential of Pteris vittata L. co-planted with woody species for As, Cd, Pb and Zn in contaminated soil

机译:与木本植物共生的凤尾蕨在污染土壤中对砷,镉,铅和锌的植物提取潜力

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The objective of this study was to determine the phytoextraction potential of a hyperaccumulator co -planted with a large biomass of woody plant in metal (loid)-contaminated soil. A pot experiment was conducted for 270 days (d) to study the growth, physiological responses, and metal(loid)s accumulation characteristics of plants, which included a shade-requiring, As-hyperaccumulator perennial herb, Pteris vittata L., co -planted with a woody tree, namely Mortis alba L. or Broussonetia papyrifera L., for soil contaminated with arsenic (As), cadmium (Cd), lead (Pb), and zinc (Zn). The results showed that. the biomass, photosynthetic pigment contents, antioxidant enzyme activity, and uptake of As in P. vittata L were significantly enhanced by co-planting with M. alba L. or B. papyrifera L. Especially, the uptake of As by P. viItutu L. was significantly (p 0.05) increased by 80.0% and 64.2% when it was co -planted with M. alba L. or B. papyrtfera L respectively, while the As, Cd, Pb, and Zn contents of both M. alba L. and B. pupyrifera L were not significantly promoted by the co-planting. The comprehensive phytoextraction of metal(loid)s could be optimized by the co-planting of P. vittata L. with M. (film L. or B. papyrifera L. The total amount. of As in the shoots from co-planting species was significantly (p 0.05) higher than that of the monoculture. with M. alba L. or B. papynfera L. and that. of Cd and Zn in the shoots was significantly (p 0.05) higher than that of the monoculture with P. vittata L The results showed that. the co-planting of P. vittata L. with M. alba L. or B. papyrifera L. can alleviate the toxic effects of metal( loid)s on plant growth and improve the comprehensive phytoextraction amounts of metal(loid)s, and is a promising strategy for remediation of metal(loid)-contaminated soil. (C) 2018 Elsevier B.V. All rights reserved.
机译:这项研究的目的是确定在金属(胶体)污染的土壤中,与大量木本植物共种植的超级蓄积剂的植物提取潜力。进行了270天(d)的盆栽实验,研究了植物的生长,生理响应和金属(金属)积累特性,其中包括需要遮荫的多年生As超级积累性草本植物Pteris vittata L.,co-种植木本树,即Mortis alba L.或Parossonetia papyrifera L.,以种植被砷(As),镉(Cd),铅(Pb)和锌(Zn)污染的土壤。结果表明。与白僵菌或草状毕生杆菌共种植显着提高了白僵菌的生物量,光合色素含量,抗氧化酶活性和As的吸收。特别是,P。vitutu L吸收了As。与白僵菌或纸莎草一起种植时,P。显着(p <0.05)分别增加了80.0%和64.2%,而M. alba的As,Cd,Pb和Zn含量均显着增加。共种植不能明显促进L. and pupyriferaL。可以通过共同种植白僵菌(P. vittata L.)和白僵菌(M.(p。L. papyrifera L.)共同种植植物来优化金属(类)的综合植物提取。 M. alba L.或B. papynfera L.的显着(p <0.05)高于单株。B. papynfera L.的芽中Cd和Zn的显着(p <0.05)。结果表明,将白僵菌与白僵菌或纸莎草一起种植可以减轻金属(金属)对植物生长的毒害作用,提高植物的综合提取能力。 (C)2018 Elsevier BV保留所有权利。

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