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Inoculation of Salix caprea with rhizosphere bacteria enhances the phytoextraction capacity for Zn and Cd

机译:用根际细菌接种Salix Caprea增强了Zn和Cd的植物萃取物

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Due to their metal accumulation potential and their large biomass production, willows are highly attractive plants for phytoextraction of Zn and Cd. The objective of our study was to investigate the effect of various rhizosphere bacteria on the accumulation of Zn and Cd in leaves and on biomass production of metal-accumulating Salix caprea. The rhizosphere bacteria were previously isolated from S. caprea rhizosphere on a contaminated site in southern Austria. The individual strains were inoculated to the roots of one year old plants prior to planting in sterilized contaminated soil. After four month growth, biomass production and heavy metal concentrations in leaves were determined. For most strains, no difference was found between the inoculated and the non-inoculated control regarding leaf biomass and foliar Zn and Cd concentrations. One strain caused a significant increase of Zn (+25%) and Cd (+16%) concentration in leaves, while another strain had a significant effect on leaf biomass (+ 37%). Regarding the total amounts of Zn and Cd in leaves, the increase of leaf biomass had a more pronounced effect than the enhanced foliar Zn and Cd concentrations.
机译:由于它们的金属积聚电位及其大的生物质生产,Willows是Zn和Cd的植物萃取的高度吸引力的植物。我们研究的目的是探讨各种根际细菌对叶片中Zn和Cd积累的影响,以及金属积累酱油的生物质生产。在奥地利南部的污染场地,先前从S. Caprea根际分离出根际细菌。在种植灭菌的污染土壤之前,将个体菌株接种到一岁植物的根部。在四个月生长后,确定生物质生产和叶中的重金属浓度。对于大多数菌株,在接种和叶片生物质和叶酸Zn和Cd浓度的接种和非接种对照之间没有发现差异。一种菌株导致叶片中Zn(+ 25%)和Cd(+ 16%)浓度的显着增加,而另一种菌株对叶生物质(+ 37%)具有显着影响。关于叶片中Zn和Cd的总量,叶片生物质的增加比增强的叶酸Zn和Cd浓度具有更明显的效果。

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