Determination of bio-accumulated Cd, Cr, Cu, Ni and Pb in a wild plant Lantana camara L. Verbenaceae, grown on waste dump site and assessment of its phyto-extraction potential for studied metals

Alok Awasthi
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Abstract

The inputs of chemical fertilizers, street runoffs and regular use of heavy metal contaminated water to irrigate farm crops may result in elevated levels of heavy metals in agri-soil. The food crops growing on such soils may selectively bio-accumulate these metals, which usually depend on the concerned plant’s bio- accumulation potential for concerned metal and characteristics of the soil. This study was aimed to evaluate the bio-accumulation of Cd, Cr, Cu, Ni and Pb in the root, stem and leaves of the wild plant Lantana camara L., Verbenaceae, grown on waste dump site, by analyzing levels of studied metals in soil and plant parts. The bio-concentration factors (BCFs) and translocation factors (TFs) for metals under study were also evaluated, to find out the suitability of Lantana plant for phytoextration of the tested metals. The observed order of metal concentrations in soil samples was Pb (8.91± 0.54) > Cr (6.42 ±0.43) >Cu (1.91± 0.17) > Ni (1.42± 0.13) > Cd (0.86± 0.09, mg/Kg). The observed levels of studied metals in roots, stem and leaves of Lantana were, Pb(8.73±0.32)> Cr (2.96± 0.18)> Cu (2.16±0.15)> Ni (1.38±0.12)>Cd (0.54±0.03mg/kg); Pb(5.18±0.24)>Cr (3.18±0.18)>Cu (2.42±0.17) >Ni (1.49±0.12) >Cd (0.28±0.02, mg/Kg) and Pb (6.07±0.27)> Cr (1.30±0.13) >Cu (0.88±0.07) Ni (0.16±0.02) >Cd (0.10 ±0.01, mg/Kg), respectively. The bio-concentration factors for Lantana from soil to roots (BCFRoot) and from roots to shoots (BCFShoot) for Cd, Cr, Cu, Ni and Pb were 0.63, 0.46, 1.13, 0.97 (~ 1.00) and 0.98 (~ 1.00) and 0.70, 1.51, 1.49, 1.20 and 1.29, respectively. The translocation factors from root to stem (TFStem) and from stem to leaves (TFLeaf) for tested metals in Lantana camara were, 0.52, 1.07, 1.12, 1.08, 0.59 and 0.36, 0.41, 0.36, 0.11, 1.17, respectively. Thus, the recorded BCF values, mostly being >1, makes Lantana suitable for phyto-extraction of tested metals from agri-soil and medium to good translocation factors (TF) suggested the potential of the plant to translocate the tested metals into the stem and leaves.
马尾草科野生植物马尾草中Cd、Cr、Cu、Ni和Pb的生物积累测定及其对所研究金属的植物提取潜力评价
化肥的投入、街道径流和经常使用重金属污染的水来灌溉农作物,可能导致农业土壤中重金属含量升高。在这种土壤上生长的粮食作物可以选择性地进行金属的生物积累,这通常取决于有关植物对有关金属的生物积累潜力和土壤特性。本研究旨在通过分析土壤和植物各部位的重金属含量,研究马鞭草科野生植物马鞭草(Lantana camara L.)根、茎和叶对Cd、Cr、Cu、Ni和Pb的生物积累。并对所研究金属的生物富集因子(BCFs)和转运因子(TFs)进行了评价,以确定柳叶属植物对所研究金属的植物提取适宜性。土壤样品中金属含量的大小顺序为Pb(8.91±0.54)>Cr(6.42±0.43)>Cu(1.91±0.17);Ni(1.42±0.13)>Cd(0.86±0.09,mg/Kg)。所研究植物根、茎、叶中重金属含量为:Pb(8.73±0.32);Cr(2.96±0.18)>铜(2.16±0.15)比;Ni(1.38±0.12);Cd(0.54±0.03mg/kg);Pb(5.18±0.24)在Cr(3.18±0.18)在铜(2.42±0.17)在倪(1.49±0.12)在Cd(0.28±0.02毫克/公斤)和Pb(6.07±0.27)比;Cr(1.30±0.13)在铜(0.88±0.07)镍(0.16±0.02)在Cd(0.10±0.01毫克/公斤),分别。土壤到根(BCFRoot)和根到梢(BCFShoot)对Cd、Cr、Cu、Ni和Pb的生物富集因子分别为0.63、0.46、1.13、0.97(~ 1.00)和0.98(~ 1.00),以及0.70、1.51、1.49、1.20和1.29。柽柳金属的根到茎(TFStem)和茎到叶(TFLeaf)转运因子分别为0.52、1.07、1.12、1.08、0.59和0.36、0.41、0.36、0.11、1.17。因此,记录到的BCF值大多为>1,表明Lantana适合从农业土壤中提取被测金属,中等到良好的转运因子(TF)表明该植物有可能将被测金属转运到茎和叶中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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