首页> 美国卫生研究院文献>Journal of Fungi >Ectomycorrhizal Fungal Inoculation of Sphaerosporella brunnea Significantly Increased Stem Biomass of Salix miyabeana and Decreased Lead Tin and Zinc Soil Concentrations during the Phytoremediation of an Industrial Landfill
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Ectomycorrhizal Fungal Inoculation of Sphaerosporella brunnea Significantly Increased Stem Biomass of Salix miyabeana and Decreased Lead Tin and Zinc Soil Concentrations during the Phytoremediation of an Industrial Landfill

机译:布鲁氏孢子菌的菌根真菌接种显着增加了柳柳的茎生物量并且在工业垃圾填埋场的植物修复过程中铅锡和锌土壤浓度降低

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摘要

Fast growing, high biomass willows ( sp.) have been extensively used for the phytoremediation of trace element-contaminated environments, as they have an extensive root system and they tolerate abiotic stressors such as drought and metal toxicity. Being dual mycorrhizal plants, they can engage single or simultaneous symbiotic associations with both arbuscular mycorrhizal (AM) fungi and ectomycorrhizal (EM) fungi, which can improve overall plant health and growth. The aim of this study was to test the effect of these mycorrhizal fungi on the growth and trace element (TE) extraction potential of willows. A field experiment was carried out where we grew clone SX67 on the site of a decommissioned industrial landfill, and inoculated the shrubs with an AM fungus , an EM fungus , or a mixture of both. After two growing seasons, the willows inoculated with the EM fungus produced significantly higher biomass. Ba, Cd and Zn were found to be phytoextracted to the aerial plant biomass, where Cd presented the highest bioconcentration factor values in all treatments. Additionally, the plots where the willows received the inoculation showed a significant decrease of Cu, Pb, and Sn soil concentrations. AM fungi inoculation and dual inoculation did not significantly influence biomass production and soil TE levels.
机译:快速生长,高生物量的柳树(sp。)已被广泛用于痕量元素污染环境的植物修复,因为它们具有广泛的根系,并且能够耐受非生物胁迫,例如干旱和金属毒性。作为双重菌根植物,它们可以与丛枝菌根(AM)真菌和外生菌根(EM)真菌进行单一或同时的共生关联,从而改善整体植物健康和生长。这项研究的目的是测试这些菌根真菌对柳树的生长和微量元素(TE)提取潜力的影响。进行了田间试验,我们在停产的工业垃圾填埋场上种植了SX67克隆,并用AM真菌,EM真菌或两者的混合物接种灌木。在两个生长季节之后,接种EM真菌的柳树产生了更高的生物量。发现Ba,Cd和Zn被植物提取到空中植物生物量中,其中Cd在所有处理中均表现出最高的生物浓缩因子值。此外,柳树接受接种的地块表明,铜,铅和锡的土壤浓度显着下降。 AM真菌接种和双重接种并未显着影响生物量生产和土壤TE水平。

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