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Evaluation of the acute toxicity of mahua oil cake aqueous extract and its effect on the behavioral responses of the freshwater grapsid crab, Varuna litterata (Fabricius, 1798)

机译:评价MAHUA油蛋糕水提取物的急性毒性及其对淡水葡萄糖蟹,Varuna Litterata(Fabricius,1798)的行为反应的影响

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摘要

Mortality and behavioral alterations are monitored as the sensitive endpoints in toxicological studies and may be applied as useful biomarkers to assess piscicidal pollution in aquatic environment. Present study assesses acute toxicity of the piscicide, mahua oil cake (MOC), and its effect on the behavioral responses of the freshwater grapsid crab, Varuna litterata, under laboratory conditions. To determine the LC50 values, a 4-day acute static renewal toxicity test was done where 10 adult male crabs (mean length 2.870 +/- 0.379 cm; mean weight 9.891 +/- 3.951 g) were exposed to different concentrations (1, 5, 10, 15, 20, 25, 30, 35ppt) of MOC aqueous extract with a control at different exposure periods. The LC50 values are 19.109ppt for 24h, 16.052ppt for 48h, 11.827ppt for 72h, and 7.631ppt for 96h. The high LC50 values indicate less sensitivity of this crab to the MOC extract than other aquatic animals. MOC extract has toxic effect on the mouthparts activity, whirling motion of water current producing activity, froth releasing activity, aggregation, balance and coordination actions, medium escaping behavior, locomotor activity, and fecal matter excretion of this crab in different exposure periods. Behavioral responses such as froth releasing activity, aggregation, and medium escaping behavior can be used as biomarkers of MOC pollution in aquatic environment.
机译:监测死亡率和行为改变作为毒理学研究的敏感终点,并且可以作为有用的生物标志物应用以评估水生环境中的碱性污染。目前的研究评估了碱性毒性,麻糖饼(MOC)的急性毒性及其对实验室条件下淡水葡萄糖蟹,Varuna Litterata的行为应答的影响。为了确定LC50值,完成了4天的急性静态毒性试验,其中10个成年雄性蟹(平均长度2.870 +/- 0.379厘米;平均重量9.891 +/- 3.951g)暴露于不同浓度(1,5 MoC含水提取物的10,15,20,25,30,35ppt,在不同的暴露时段的对照。 LC50值为19.109ppt,24h,16.052ppt为48h,11.827ppt,72h,7.631ppt为96h。高LC50值表明该螃蟹对MOC提取物的敏感性比其他水生动动物更少。 MOC提取物对口感活动具有毒性作用,水流产生活性的旋转运动,泡沫释放活性,聚集,平衡和协调作用,培养逃逸行为,运动活动以及该蟹在不同的暴露期间的排泄。诸如泡沫释放活性,聚集和中等逃逸行为的行为反应可作为水生环境中MOC污染的生物标志物。

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