首页> 外文期刊>Science of the total environment >Trichoderma sp. PDR1-7 promotes Pinus sylvestris reforestation of lead-contaminated mine tailing sites
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Trichoderma sp. PDR1-7 promotes Pinus sylvestris reforestation of lead-contaminated mine tailing sites

机译:木霉属PDR1-7促进樟子松再造铅污染的矿山尾矿场

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摘要

Vegetation is critical to stabilize and remediate mine tailing sites, but plant growth is often poor due to toxicity from heavy metal(loid)s (HMs). A non-symbiotic endophytic fungus, Trichoderma sp. PDR1-7, isolated from Pb-contaminated mine tailing soil, exhibited both high tolerance to HMs and desirable plant growth-promoting characteristics. PDR1-7 promoted HM solubilization in mine tailing soil and removed significant amounts of Pb and other HMs from liquid media containing single and multiple metals. Pb removal efficiency increased with initial pH from 4 to 6 and with Pb concentration from 100 to 125 mg L~(-1). Inoculating soil with PDR1-7 significantly increased nutrient availability and seedling growth, chlorophyll and protein contents, as well as antioxidative enzyme (superoxide dismutase) activity. A decrease in malondialdehyde indicated less oxidative stress. HM concentrations were much higher in Pinus sylvestris roots when PDR1-7 was present. These observations suggest the utility of Trichoderma sp. PDR1-7 for pine reforestation and phytoremediation of Pb-contaminated mine soil.
机译:植被对于稳定和补救矿山尾矿位至关重要,但是由于重金属(HM)的毒性,植物的生长通常较差。一种非共生内生真菌,木霉属。从受Pb污染的矿山尾矿土壤中分离出的PDR1-7既显示出对HM的高耐受性,又具有理想的植物生长促进特性。 PDR1-7促进了矿山尾矿土壤中的HM溶解,并从含有单种和多种金属的液体介质中去除了大量Pb和其他HM。初始pH从4增加到6,Pb浓度从100 mg增加到125 mg L〜(-1),Pb去除效率增加。用PDR1-7接种土壤可显着提高养分利用率,幼苗生长,叶绿素和蛋白质含量以及抗氧化酶(超氧化物歧化酶)活性。丙二醛的减少表明较少的氧化应激。当存在PDR1-7时,樟子松根中的HM浓度要高得多。这些观察结果表明木霉属种的实用性。 PDR1-7用于松树造林和受铅污染的矿物质土壤的植物修复。

著录项

  • 来源
    《Science of the total environment》 |2014年第1期|561-567|共7页
  • 作者单位

    Division of Biotechnology, Advanced Institute of Environment and Bioscience, College of Environmental and Bioresource Sciences, Chonbuk National University, Iksan 570-752, Republic of Korea;

    School of Natural Resources, University of Nebraska-Lincoln, Lincoln, NE 68583-0817, USA;

    Division of Biotechnology, Advanced Institute of Environment and Bioscience, College of Environmental and Bioresource Sciences, Chonbuk National University, Iksan 570-752, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioleaching; Heavy metal(loid); Non-symbiotic fungi; Pinus; Vegetation;

    机译:生物浸出;重金属(胶体);非共生真菌;松树;植被;

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