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首页> 外文期刊>Journal of applied toxicology >Growth evaluation method by live imaging of Daphnia magna and its application to the estimation of an insect growth regulator
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Growth evaluation method by live imaging of Daphnia magna and its application to the estimation of an insect growth regulator

机译:Daphnia Magna实时成像的生长评价方法及其在昆虫生长调节器估算中的应用

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摘要

The zooplankton Daphnia magna has been widely used as a test organism to assess the toxicity of chemical substances because of its important position in aquatic ecology and its ease of handling. Among the various endpoints for toxicity evaluation, growth rate is one of the most critical and many studies have been conducted. However, measurement of growth rate was time-consuming and not an ideal endpoint in terms of screening. In this study, we demonstrated a live imaging method to monitor the growth of daphnids by area measurement. In this method, daphnid images were directly obtained from a swimming chamber and these images were processed for the evaluation of growth. The reliability of this method was confirmed by comparison with the conventional dry weight method of the same animals. The body area of daphnids using this method showed a strong correlation with the dry weight method, with R-2=0.930. In addition, we quantified the effect of a toxicant, fenoxycarb, on the growth of the animal. Fenoxycarb concentrations of 0, 0.027, 0.27 and 2.7 mu gl(-1) were tested and their effects on growth were estimated by the live imaging method. In the toxicity test, the area of daphnids decreased significantly with increasing fenoxycarb concentration. These results indicate that the present live imaging method is a reliable approach for daphnid toxicity testing. This method is promising for high-throughput Daphnia toxicity tests and real-time individual observations. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:Zooplankton Daphnia Magna已被广泛用作测试生物,以评估化学物质的毒性,因为它在水生生态的重要地位及其易于处理。在毒性评估的各种终点中,增长率是最关键的和许多研究之一。然而,在筛选方面,生长速率的测量是耗时的,而不是理想的终点。在这项研究中,我们证明了一种实时成像方法,以通过面积测量监测Daphnids的生长。在该方法中,将Daphnid图像直接从游泳室获得,并处理这些图像以评估生长。通过与相同动物的常规干重方法相比,确认了该方法的可靠性。使用该方法的Daphnids体积显示出与干重方法的强相关,R-2 = 0.930。此外,我们量化了毒物,芬芳基碱对动物生长的影响。对0,0.027,0.27和2.7μg11(-1)的Fenoxycarb浓度进行了测试,并通过实时成像方法估算它们对生长的影响。在毒性测试中,随着芬芳基菌浓度的增加,Daphnids的面积显着降低。这些结果表明,目前的实时成像方法是Daphnid毒性测试的可靠方法。该方法对高通量Daphnia毒性测试和实时个别观测有前途。版权所有(c)2014 John Wiley&Sons,Ltd。

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