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铜对隆线溞趋光行为的抑制作用及其致死效应

Evaluating the Biotoxicity effect of Copper by the Phototactic Behaviour of Daphnia carinata and LC50

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【作者】 吴永贵; 熊焱; 林初夏;

【Author】 WU Yong-gui~(1,2),XIONG Yan~2,LIN Chu-xia~1(1.Faculty of Resources and Environment,South China Agricultural University,Guangzhou 510642,China;2.Faculty of Resources and Environment,Guizhou Univeristy,Guiyang 550003,China)

【机构】 华南农业大学资源环境学院; 贵州大学资源与环境学院; 华南农业大学资源环境学院 广东广州510642; 贵州贵阳550003; 广东广州510642;

【摘要】 采用隆线溞(Daphnia carinata)纯生物株Dc42为试验生物,参照ISO6341大型溞活动抑制试验及ISO6241大型溞致死生物试验法,研究水体中Cu2+对隆线溞3 h趋光行为的抑制作用及其24~96 h的致死效应。结果表明,隆线溞的趋光指数(Ip)与Cu2+浓度存在着明显的负相关关系(R2=0.994,P<0.001),随着溶液中Cu2+浓度的增加,趋光指数急剧下降。Cu2+导致隆线溞趋光性发生显著改变的检测下限远低于LC50。其3 h-Ip监测下限(0.005 6 mg/L)比24 h-LC50(0.031 mg/L)及48 h-LC50(0.021 mg/L)分别低81.94%和73.33%;仅相当于96 h-LC50(0.006 mg/L)。铜对不同时段隆线溞死亡率影响与3 h趋光指数下降的趋势相似,在0.0032 mg/L至0.1 mg/L的浓度范围内,隆线溞各时段死亡率与浓度之间并不呈直线关系,而是呈Boltzm ann曲线关系,相关系数均为0.995以上。因此,趋光指数是一个较为灵敏的毒理学指标,利用隆线溞趋光行为抑制法来判断Cu2+生物毒性的大小,具有快速、简便等优点,并能在短时间内获取具有高度重复性的实验数据。研究结果可为建立利用隆线溞趋光行为抑制法评价化学物质生物毒性提供快速的测试方法,为进一步了解重金属污染的生态毒性效应提供理论依据。

【Abstract】 The study on the biotoxicity of varying copper concentrations by the phototactic behaviour of Daphnia carinata and LC50.The results showed that heavy metal biotoxicity was correlated with themselves but also with the their levels in waters.Resulting that none of linear relationships was founded between biotoxicities and concentrations of heavy metals in solutions.It seems reasonable to suggest that.Referred ISO6341 bioassay methods,the subject used a specific Daphnia carinata clone(Dc(42)) in the present experiment to study the effects of chromium on phototactic behavior.The results show that the of D.carinata decreases with the rise of Cr6+ concentration(R2=0.994,P<0.001).Being compared with the standard LC50 bioassay,the lower limit detection concentration(LLDC=0.0056mg/L) of 3h-Ip was 81.94% and 73.33% lower than 24h-LC50(0.031mg/L)and 48h-LC50(0.021mg/L),respectively;just as 96h-LC50(0.006mg/L).Therefore,the phototactic index(Ip) inhibition is a more sensitive toxicology index than LC50,and the new biotechnology can greatly shorten the test time that the speed of test is 816 times higher than the standard LC50.The method for bio-evaluating acute toxicity of chemicals and detecting pollutants in water are efficient,sensitive,economical and quick.

【基金】 国家自然科学基金资助项目(30270279);贵州大学人才基金项目(20050518)
  • 【文献出处】 云南农业大学学报 ,Journal of Yunnan Agricultural University , 编辑部邮箱 ,2006年05期
  • 【分类号】X174
  • 【被引频次】14
  • 【下载频次】215
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