标题: 以多变量分析探讨现行发布之生物毒性试验
Using Multivariate Statistical Analysis to Evaluate the Present Standard Methods of Aquatic Bioassays
作者: 孟哲贤
Meng, Che-Hsien
陈重元
Chen, Chung-Yuan
环境工程系所
关键字: 月芽藻;多变量分析;主成分分析;集群分析;组生物;Pseudokirchneriella subcapitata;Multivariate;Principal Component Analysis;Cluster Analysis;The test battery
公开日期: 2012
摘要: 水生生物毒性评估会因生物敏感性之差异而有低估毒性风险的发生,因此
不能只用单一种生物试验来评估毒性。"组生物"试验方法中包含多种生物试验
方法,能得到较完整的毒性资讯。然而,我国环境检验所发布之环境生物毒性
检验方法中,并未考虑到物种敏感性及食物链之概念。因此,本研究目的除了
利用实验及统计结果了解现行发布之生物毒性试验方法是否足以有效评估污
染物的危害性外,并为"组生物"试验法选择适当的生物测试方法,作为日后评
估环境毒物之参考依据。本实验主要利用多变量统计法进行研究分析,为避免
统计结果缺乏准确性,研究以小样本(二十种)及大样本数(九十种)之有机物两个
部份进行,所用到之生物试验法包含密闭式与批次式月芽藻、水蚤、鲤鱼、
Fathead minnow及海洋萤光菌六种试验法,并将两部份对应生物试验所得之毒
性数据分别进行主成分分析与集群分析,以比较大小样本数在统计上之差异性。
多变量分析结果显示,密闭式月芽藻为本验究中最具敏感性的试验方法,且在
主成分分析中与水蚤皆为重要的成分变数;海洋萤光菌、鲤鱼与Fathead minnow
之间具非常高之相关性,但会因有机物之特殊作用机制使其相关性改变。由于
大小样本数之有机物统计结果相符合,依据主成分分析、群集分析及Pearson
相关系数分析之结果选择的"组生物"包含:密闭式月芽藻、Daphnia magna及海
洋萤光菌或添加鲤鱼试验法,且根据最终之主成分分析结果显示,以此"组生物
"来评估毒性并不会造成任何毒性评估资讯之损失。因此,密闭式月芽藻、
Daphnia magna及海洋萤光菌是"组生物"试验法中合适的试验生物。
In the aquatic toxicity testing, the potential risk of toxicants can be underestimated due to differences in species sensitivity; therefore, it can not only use single-species to assess the toxicity. Test batteries consist of several individual assays which have become more common and receive more complete toxicity information. However, from the testing methods for environmental biological toxicity of the Environmental Protection Administration of Taiwan, it does not consider the concept of species sensitivity and the different trophic levels. The aims of this study not only use experimental and statistical data to investigate whether the existing testing methods for environmental biological toxicity can assess the harmfulness of the pollution effectively, but also select an optimal battery of bioassays as a source references to evaluate ecotoxicity in the future. This study utilize mainly the multivariate analyses, to avoid the insufficient accuracy of the statistical result, the experiment is proceeding from two parts: small sample (Twenty chemicals) and large sample (ninety chemicals). The six bioassays include closed-system and open-system algal(Pseudokirchneriella subcapitata), Daphnia magna, Cyprinus carpio, Fathead minnow and Microtox, then using Principal Component Analysis (PCA) and Cluster Analysis(CA) separately from the toxicity data of the two corresponding biological test. These multivariate analysis clearly showed that closed-system algal is the most sensitive testing method in this study, and is the same as Daphnia magna in the PCA that both are the important component variable. The correlation among Microtox, Cyprinus carpio and Fathead minnow is high, but it changes according to the special mode of action. PCA, CA and Pearson allowed for the selection of the following test battery:closed-system algal、Daphnia magna and Microtox or in addition Cyprinus carpio test. And the final PCA shows that the number of bioassay can be reduced without significantly losing information. Thus, closed-system algal, Daphnia magna and Microtox are the ideal bioassays in the test battery.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079919517
http://hdl.handle.net/11536/49683
显示于类别:Thesis


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