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不同环境条件下三丁基氧化锡对火腿许水蚤(Schmakeria poplesia)的毒性效应 被引量:1
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作者 黄瑛 朱丽岩 《生态毒理学报》 CAS CSCD 北大核心 2012年第2期148-154,共7页
为探讨不同环境条件下三丁基氧化锡(TBTO)对桡足类的毒性效应,通过世代培养30日龄火腿许水蚤(Schmakeria poplesia)的多因素协同作用急性毒性实验,测定了温度、盐度、单胞藻浓度和桡足类密度等环境因素对TBTO毒性效应的影响。结果显示:T... 为探讨不同环境条件下三丁基氧化锡(TBTO)对桡足类的毒性效应,通过世代培养30日龄火腿许水蚤(Schmakeria poplesia)的多因素协同作用急性毒性实验,测定了温度、盐度、单胞藻浓度和桡足类密度等环境因素对TBTO毒性效应的影响。结果显示:TBTO对火腿许水蚤雌、雄个体的毒性效应无显著差异,96h-LC50值分别为0.41和0.42μg·L-1;随着温度的升高,TBTO毒性效应增强;与盐度25条件相比,盐度15和35条件下火腿许水蚤对TBTO的敏感性相对较高;单胞藻浓度升高导致TBTO对桡足类毒性效应降低;另外,桡足类暴露敏感性还受到其密度的影响。以上结果表明,环境因素对污染物的生物毒性效应产生较大影响,在毒理学研究中应根据实际环境情况设定合理的环境条件,以保证最终生态风险评价结果的科学性。 展开更多
关键词 三丁基氧化锡(TBTO) 火腿许水蚤 环境因素 急性毒性
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A Multi-Generation Schmakeria poplesia Culturing System for Use in Ecotoxicological Study 被引量:1
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作者 HUANG Ying ZHU Liyan QIU Xuchun QI Benjin ZHANG Tianwen 《Journal of Ocean University of China》 SCIE CAS 2009年第1期30-34,共5页
Crustacean zooplankton form the keystone link between primary producers and fish stocks in marine and estuary, ecosystems. We have established a multi-generation cultivation system for zooplankton ruth which future ex... Crustacean zooplankton form the keystone link between primary producers and fish stocks in marine and estuary, ecosystems. We have established a multi-generation cultivation system for zooplankton ruth which future experiments on the biological effects of pollutants in marine and estuary environments can be better performed. A population of calanoid copepod, Sehmakeria poplesia, was collected in December 2003 and maintained in a static system through all stages (eggs to adults). The population ex- hinted an average developmental time of 13.6 d in conditions corresponding to the natural environment (water temperature 20~C salinity 15). A series of experiments were performed to examine copepod egg production and hatching success as functions of food type and feeding concentration. Results in our study showed that Isoehrysis galbana was more favored for the reproduction of cope- pods than Phaeodactylum tricornutum, and 10xl0%ellsmL-1 was the most practical algae concentration. We have demonstrated that the Schmakeria poplesia population can be maintained in the laboratory through multiple generations. In addition, methods to control egg production through changes in food concentration have been established, making it feasible to control the start date of exposure experiments or the timing of the collection of oftspring to initiate a new generation. 展开更多
关键词 schmakeria poplesia CULTURING egg production development toxic pollutants
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