Determination of Cytotoxic Impact of Heavy Metals on Plant Cells Using (Onion)

T.P. Olakunle, B.A. Bamkefa, B.M. Olowe, O.O. Oyesiku, O.O. Ogunlaja
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Abstract

The environment faces significant global health challenges due to the presence of heavy metals, with harmful substances being  discharged into the lithosphere, hydrosphere, and atmosphere. This study focused on assessing the cytotoxic effects of heavy metals  recovered from dumpsites on the meristematic tissue of root tips of Allium cepa L. Soil samples, collected from central dumpsites  containing heavy metals, underwent standard procedures. The concentrations of heavy metals in the samples were determined using the  Association Official Analytical Chemist (AOAC) method. Each sample was digested with acids, neutralized with Calcium Oxide (CaO),  and used to grow Allium cepa at varying concentrations, determining the LD50 of each sample. The LD50 concentrations were then  employed to investigate cytotoxic effects on Allium cepa using standard techniques. Processed soil samples yielded Pb, Cr, Cd, Ni, Co, Zn,  Fe, and Cu at different concentrations, many of which exceeded the WHO standard values. The mitotic index ranged from 5.34 ± 0.01 to  10.36 ± 0.00, 5.34 ± 0.00 to 13.16 ± 0.01, 3.36 ± 0.01 to 6.81 ± 0.01, 2.48 ± 0.01 to 13.16 ± 0.01, with the control at 13.32 ± 0.01. Chromosomal  aberrations, including chromosome break, fragmentation, bridge, vagrant, lesion, and sticky C-mitosis, were observed. These alterations  indicated that toxic substances significantly impact DNA sequence.  
利用(洋葱)测定重金属对植物细胞的细胞毒性影响
由于重金属的存在,有害物质被排放到岩石圈、水圈和大气中,全球环境面临着巨大的健康挑战。这项研究的重点是评估从垃圾场回收的重金属对薤白根尖分生组织的细胞毒性影响。样本中的重金属浓度采用美国官方分析化学家协会(AOAC)的方法测定。每个样本都用酸进行消化,用氧化钙(CaO)进行中和,并用不同浓度的薤白进行生长,从而确定每个样本的半数致死剂量(LD50)。然后利用 LD50 浓度,采用标准技术研究其对薤白的细胞毒性作用。经处理的土壤样本中含有不同浓度的铅、铬、镉、镍、钴、锌、铁和铜,其中许多浓度超过了世界卫生组织的标准值。有丝分裂指数从 5.34 ± 0.01 到 10.36 ± 0.00,5.34 ± 0.00 到 13.16 ± 0.01,3.36 ± 0.01 到 6.81 ± 0.01,2.48 ± 0.01 到 13.16 ± 0.01,对照为 13.32 ± 0.01。观察到染色体畸变,包括染色体断裂、片段化、桥接、游离、病变和粘性 C 缺失。这些变化表明,有毒物质对 DNA 序列有重大影响。
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