农田和垃圾场土壤和蔬菜(辣椒)重金属含量对比分析及对植物DNA的影响

A. Adu, O. Aderinola, A. Ogbe, T. Giwa, I. O. Salaam
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摘要

采用标准程序检测了从尼日利亚拉各斯(Lagos)的垃圾场(Ojota)和农田(Badagry)收集的辣椒(Capsicum annuum)重金属水平及其对DNA的影响。农田和垃圾场土壤重金属浓度分别为:Zn(882.0±0.006mg/kg, 14316.8±1.009mg/kg)、Cr(2.006±0.002mg/kg,3.888±0.002mg/kg)、Cd(0.098±0.001mg/kg, 0.644±0.002mg/kg)、Cu(0.206±0.001mg/kg, 0.997±0.001mg/kg)、Pb(0.005±0.003mg/kg, 0.843±0.002mg/kg)。农田和垃圾场土壤中N(3153.6±0.008mg/kg)、P(7598.3±0.009mg/kg、8794.5±0.003mg/kg)、K(113.56±0.004mg/kg、532.12±0.004mg/kg)含量分别为4191.2±0.006mg/kg、4191.2±0.006mg/kg。排土场土壤N、P、K值显著高于农田土壤(P <0.05),唯独Zn值显著高于农田土壤。同样,在垃圾场和农田中,除锌外,其他金属元素在黄参叶、茎和根中的含量均无显著差异。农田柽柳叶片、茎、根锌含量显著高于垃圾场(p<0.05)。对照位点的辣椒DNA谱带比倾倒位点的DNA谱带清晰,但未发生突变。综上所述,从农田(Badagry)和垃圾场(Ojota)收集的羊草含有矿物质和重金属,其浓度仍在标准允许范围内。因此,来自这两个地点的年轮菌对人类食用是安全的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Analysis of Heavy Metals Concentration in Soil and Vegetable (Capsicum annum) Collected from Two Sampling Sites (Farmland and Dumpsite) and the Effect on Plant DNA
The levels of heavy metals and their effect on the DNA of Capsicum annuum collected from dumpsite (in Ojota) and farmland (in Badagry) in Lagos, Nigeria, were examined using standard procedures. The results of concentration of heavy metals in the soil for the farmland and dumpsite respectively are: Zn (882.0 ±0.006mg/kg, 14316.8±1.009mg/kg), Cr (2.006 ±0.002mg/kg,3.888± 0.002mg/kg), Cd (0.098 ± 0.001mg/kg, 0.644 ± 0.002mg/kg), Cu (0.206± 0.001mg/kg, 0.997 ± 0.001mg/kg) and Pb (0.005 ± 0.003mg/kg, 0.843± 0.002mg/kg) respectively. The values of N (3153.6± 0.008mg/kg, 4191.2± 0.006mg/kg), P (7598.3 ± 0.009mg/kg, 8794.5 ± 0.003mg/kg) and K (113.56 ± 0.004mg/kg, 532.12 ± 0.004mg/kg) were recorded in the soil from farmland and dumpsite respectively. While the values of N, P, and K in soil from dumpsite were higher (p<0.05) than that from farmland, the only value of Zn in the soil of dumpsite was significantly higher than in soil from farmland. Similarly, the values of all metals except Zn recorded in the leaf, stem, and root of C. annuum showed no significant difference between the sample collected from dumpsites and farmland. The values of Zn in leaf, stem, and root of C. annuum from farmland were significantly higher (p<0.05) than that of the dumpsite.  The DNA bands of the Capsicum annuum from the control site have a clearer band spectrum than that from the dumpsite site, however, there was no DNA mutation. In conclusion, C. annuum collected from both farmland (in Badagry) and dumpsite (in Ojota) contained minerals and heavy metals whose concentrations were still within standard permissible limits. Thus, C. annuum from both sites is safe for human consumption.
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