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Rhizosphere characteristics, heavy metal accumulation and growth performance of two willow (Salix × rubens) clones

机译:两个柳树(Salix×rubens)克隆的根际特征,重金属积累和生长性能

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High-biomass tree species holds promise for a clean up of metal contaminated soils. Root and fungal activities modify soil characteristics that are important factors for the phytoextraction process (metal availability and toxicity). In a rhizobox experiment, two clones of Salix × rubens derived from contaminated and non-contaminated sites were tested for growth performance and metal (Cd, Pb and Zn) accumulation on a polluted Calcaric Cambisol. The largest metal concentrations in leaves were 66.7 mg Cd/kg, 12.8 mg Pb/kg and 1090 mg Zn/kg. The results indicate that metal tolerance and accumulation of S. × rubens may be a constitutive rather than an adaptive property. Soil pH did not differ among rhizobox compartments. However, acid neutralization capacity was decreased in rhizosphere. DOC in rhizosphere was increased by 37% and seemed to enhance labile fraction of Pb and Zn, whereas Cd was not affected. The replenishment of labile metals from less labile soil fractions was efficient enough to almost compensate the plant uptake. S. × rubens can effectively induce chemical changes in the rhizosphere is very promising for a clean up of metal-polluted soils.
机译:高生物量树种有望清除金属污染的土壤。根和真菌的活动会改变土壤特性,这些特性是植物提取过程的重要因素(金属的利用率和毒性)。在根瘤菌实验中,测试了来自受污染和未受污染部位的柳柳的两个克隆的生长性能和金属(镉,铅和锌)在污染的钙锰矿上的积累。叶片中最大的金属浓度为66.7 mg Cd / kg,12.8 mg Pb / kg和1090 mg Zn / kg。结果表明,金属耐受性和S.×rubens的积累可能是本构而不是适应性。根际箱间的土壤pH没有差异。但是,根际中的酸中和能力下降。根际中的DOC增加了37%,似乎增加了Pb和Zn的不稳定部分,而Cd不受影响。从不稳定土壤中补充不稳定金属的效率足以抵消植物的吸收。 S.×rubens可以有效地诱导根际化学变化,对于清除金属污染的土壤非常有希望。

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