尼日利亚西南部两个污染泻湖环境污染生物指标黑digitatus的细胞遗传学研究

OB Bassey, L. Chukwu, GC Alimba
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引用次数: 2

摘要

近年来,人为活动对水生生态系统的污染日益严重,这引起了国内外对水生生物群影响的关注。本研究研究了两个污染泻湖中黑地麻的遗传毒性效应。微核(MN)检测作为染色体损伤的一种指标,在现场研究中得到了广泛的应用。根据APHA标准方案,对黑趾棘猴外周血红细胞进行MN分析和理化参数评价。两个潟湖各采样点的水温、pH、溶解氧(DO)和生化需氧量(BOD5)均有显著的季节变化(p < 0.05)。两个泻湖的DO和BOD5水平均低于允许限度(FMEnv)。细胞遗传学分析显示,MN频率分别为70.2%和29.8%,具有统计学意义(p < 0.05),而核异常(NAs)中双核细胞(BN)的形成增加了68.7%,BN增加了31.3%;60%有泡细胞(BL), 40%有泡细胞(BL);loge和Badagry泻湖分叶细胞(LB)的比例分别为58.8%和41.2%。MN和NAs的诱导率随频率的增加而增加;两个潟湖鲶鱼外周血红细胞MN > BN > BL > LB。Pearson相关分析显示,两个泻湖中BOD和电导率对MN和BN的诱导频率均呈显著负相关(p < 0.05)。在暴露于来自Ologe和Badagry泻湖的化学和有机化合物混合物的情况下,鲶鱼的MN形成和核异常(NAs)是敏感的非特异性诱变损伤指标。因此,微核检测是水生生态系统生物监测的一种良好的生物标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cytogenetics of Chrysichthys nigrodigitatus as Bioindicator of Environmental Pollution from Two Polluted Lagoons, South-Western Nigeria
Pollution of aquatic ecosystems from anthropogenic activities has heightened in recent times and this has elicited national and international concern on the impacts on aquatic biota. This study investigated the genotoxic effects in C. nigrodigitatus from two polluted lagoons. Micronuclei (MN) test, as an index of chromosomal damage, is widely applied in field studies. The peripheral erythrocytes from C. nigrodigitatus were subjected to MN analysis and physicochemical parameters were evaluated following APHA standardized protocol. There were significant (p < 0.05) seasonal variations in water temperature, pH, dissolved oxygen (DO) and biochemical oxygen demand (BOD5) across sampling stations in both lagoons. The levels of DO and BOD5 were below permissible limits (FMEnv) in both lagoons. Cytogenetic analyses revealed a statistically significant (p < 0.05) in MN frequencies with 70.2% and 29.8%, while the nuclear abnormalities (NAs) observed an increased formation of 68.7% Binucleated cells (BN) and 31.3% BN; 60% of blebbed cells (BL) and 40% BL; 58.8% lobed cell (LB) and 41.2% LB in Ologe and Badagry lagoons respectively. MN and NAs induction increased in the order of frequencies; MN > BN > BL > LB in the peripheral erythrocyte of catfish from both lagoons. Pearson correlation showed negative significant induction (p < 0.05) with the frequencies of MN and BN induced by BOD and Conductivity in both lagoons. The induction of MN formation and nuclear abnormalities (NAs) in catfish are sensitive non-specific indicators for mutagenic damage, exposed to admixtures of chemical and organic compounds from Ologe and Badagry lagoons. Thus, micronucleus assay serves as a good biomarker for biomonitoring aquatic ecosystems.
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