Bio- accumulation of Cd, Cr, Cu, Ni and Pb in a wild grass, Parthenium hysterophorus L. Asteraceae, growing naturally on barren land and evaluation of phyto-extraction potential of the plant for studied metals

Alok Awasthi
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Abstract

Because of the inbuilt bio-accumulation mechanism several plants have shown a remarkable capability of accumulation of metals from contaminated soil into roots, tubers and upper parts of the plants. This study was undertaken to evaluate the bio-accumulation potential of a wild grass, Parthenium hysterophorus L., Asteraceae grown on the barren land along with the National highways for Cd, Cr, Cu, Ni and Pb by determining the bio-accumulated levels of these metals in the samples of soil, roots and shoot of the plant. The various bio-concentration factors (BCFs), translocation factors (TFs) and Biological accumulation coefficients (BACs) for studied metals were evaluated, to find out the suitability of Parthenium plant for phyto-extration of the studied metals. The order of observed levels of heavy metals in the samples of soil, root and shoots were: Pb (8.12±0.48) > Cr (7.18± 0.39) > Cu (5.64± 0.26) > Ni (3.91± 0.21) > Cd (1.31± 0.08) and Pb (6.67± 0.34) > Cu (6.11 ±0.27) >Cr (6.05± 0.23) >Ni (4.14± 0.18) > Cd (1.42± 0.11) and Pb (7.22±0.29) > Cr (5.97±0.23)>Cu (5.96 ±0.25)>Ni (5.13±0.21) > Cd (1.70±0.14 mg/Kg, dw), respectively. The soil to roots bio-concentration factors, BCFRoot for studied metals were: Cd (1.08) > Cu (1.08) >Ni (1.06) > Cr (0.84)>Pb (0.82). The order of root to shoot translocation factors, TFShoot for these metals in Parthenium hysterophorus L., was: Ni (1.24) > Cd (1.20) > Pb (1.08) > Cr (0.99~1.00)> Cu (0.98~1.00). The various soil to shoot biological accumulation coefficients, BACShoot for studied metals in Parthenium plant were, Ni (1.31) > Cd (1.30)> Cu (1.06) > Pb (0.89) >Cr (0.83), respectively. Comparatively higher BCF >1, TF >1 and higher BAC values for metals under study suggested that the plant Parthenium hysterophorus L has potential to translocate these metals to the above ground parts of the plants and thereby their phyto-extraction from contaminated soil.
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荒地自然生长野生植物Parthenium hysterophorus L. Asteraceae对Cd、Cr、Cu、Ni和Pb的生物积累及其对所研究金属的植物提取潜力评价
由于内在的生物积累机制,一些植物表现出显著的从污染土壤中积累金属到植物根、块茎和上部的能力。本研究通过测定生长在国道沿线贫瘠土地上的野生草Parthenium hysterophorus L., Asteraceae对Cd、Cr、Cu、Ni和Pb的生物积累潜力,对其土壤、根和茎的生物积累水平进行了评价。通过对所研究金属的各种生物富集因子(BCFs)、转运因子(TFs)和生物积累系数(BACs)进行评价,以确定Parthenium植物提取所研究金属的适宜性。土壤、根、芽中重金属含量的变化顺序为:Pb(8.12±0.48)>Cr(7.18±0.39)>Cu(5.64±0.26)>Ni(3.91±0.21)>Cd(1.31±0.08)、Pb(6.67±0.34)>铜(6.11±0.27)在Cr(6.05±0.23)在倪(4.14±0.18)比;Cd(1.42±0.11)和Pb(7.22±0.29)>Cr(5.97±0.23)在铜(5.96±0.25)在倪(5.13±0.21)比;Cd(1.70±0.14 mg/Kg, dw)。土壤对根系的生物富集因子,BCFRoot对所研究的金属为:Cd (1.08) >Cu (1.08) >Ni (1.06) >Cr (0.84);Pb(0.82)。这些金属的根到茎转运因子的顺序为:Ni (1.24) >Cd (1.20) >Pb (1.08) >Cr(0.99 ~ 1.00)比;铜(0.98 ~ 1.00)。各土壤对所研究的Parthenium植物中金属的生物积累系数为,Ni (1.31) >Cd(1.30)比;Cu (1.06) >Pb (0.89) >Cr(0.83)。相对较高的BCF >1、TF >1和较高的BAC值表明,植物Parthenium hysterophorus L有可能将这些金属转运到植物的地上部分,从而从污染土壤中提取它们。
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