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利用大蒜微核试验对水和土壤中低水平汞衍生物进行生物监测。

Biomonitoring of low levels of mercurial derivatives in water and soil by Allium micronucleus assay.

作者信息

Dash S, Panda K K, Panda B B

机构信息

Department of Botany, Berhampur University, India.

出版信息

Mutat Res. 1988 Feb;203(1):11-21. doi: 10.1016/0165-1161(88)90003-9.

Abstract

The Allium micronucleus (MNC) assay was developed to monitor low levels of mercury in aquatic and terrestrial environments. Four mercurial derivatives namely mercuric chloride (MC), methyl mercuric chloride (MMC), phenyl mercuric acetate (PMA) and a methoxy ethyl mercuric chloride based fungicide, Emisan-6, were tested to assess the sensitivity and versatility of the Allium MNC assay. Allium bulbs were set directly on water and soil contaminated with known levels of mercurial derivatives (0.0001-10.00 ppm). On the 5th day the endpoints measured were root length, mitoses with spindle abnormality and cells with MNC in root meristems. The effective concentrations of the test chemicals that cause 50% of root length as compared to control (EC50) were determined from dose-response curves so obtained. The lowest effective concentration tested (LECT) and highest ineffective concentration tested (HICT) for each of the mercurial derivatives for the induction of spindle malfunction and MNC were determined. It was found that EC50, LECT and HICT values for mercurial derivatives in soil were higher than those in water. The frequencies of cells with MNC and mitoses with spindle abnormality were highly correlated indicating that MNC is a good parameter of spindle malfunction. The present approach increased the sensitivity of the Allium assay by 10-fold, the detection limit being 0.001-0.1 ppm and 0.1-1.0 ppm in aquatic and terrestrial environments respectively, depending on the species of mercury.

摘要

葱属微核(MNC)试验用于监测水生和陆地环境中的低水平汞。测试了四种汞衍生物,即氯化汞(MC)、甲基氯化汞(MMC)、苯基醋酸汞(PMA)以及一种基于甲氧基乙基氯化汞的杀菌剂Emisan - 6,以评估葱属MNC试验的灵敏度和通用性。将葱属鳞茎直接放置在被已知水平汞衍生物(0.0001 - 10.00 ppm)污染的水和土壤上。在第5天,测量的终点指标为根长、有纺锤体异常的有丝分裂以及根分生组织中有微核的细胞。根据所获得的剂量 - 反应曲线确定与对照相比导致根长50%变化的受试化学物质的有效浓度(EC50)。确定了每种汞衍生物诱导纺锤体功能障碍和微核的最低有效测试浓度(LECT)和最高无效测试浓度(HICT)。结果发现,汞衍生物在土壤中的EC50、LECT和HICT值高于在水中的。有微核的细胞频率和有纺锤体异常的有丝分裂频率高度相关,表明微核是纺锤体功能障碍的一个良好参数。目前的方法将葱属试验的灵敏度提高了10倍,根据汞的种类,在水生和陆地环境中的检测限分别为0.001 - 0.1 ppm和0.1 - 1.0 ppm。

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