研究了氯氰菊酯和氰戊菊酯对栉孔扇贝Chlamys farreri的急性毒性作用和不同农药浓度对栉孔扇贝鳃ATP酶的影响。结果表明:氯氰菊酯和氰戊菊酯对栉孔扇贝的96 h LC50分别为0.240、1.742mg/L,安全浓度分别为2.40、17.40μg/L,栉孔扇贝对氰...
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研究了氯氰菊酯和氰戊菊酯对栉孔扇贝Chlamys farreri的急性毒性作用和不同农药浓度对栉孔扇贝鳃ATP酶的影响。结果表明:氯氰菊酯和氰戊菊酯对栉孔扇贝的96 h LC50分别为0.240、1.742mg/L,安全浓度分别为2.40、17.40μg/L,栉孔扇贝对氰戊菊酯的敏感性低于氯氰菊酯;不同浓度的氯氰菊酯和氰戊菊酯均使栉孔扇贝鳃Na+/K+-ATP、Ca2+-ATP、Mg2+-ATP酶的活性有不同程度的提高,这是扇贝对农药作出的一种急性应急反应。
The epidemic of diseases, which impeded the continual and healthy development in aquaculture, has been a thorny problem for long time. Several immunostimulants including glucan, seaweed polysaccharides, chitin, vitami...
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The epidemic of diseases, which impeded the continual and healthy development in aquaculture, has been a thorny problem for long time. Several immunostimulants including glucan, seaweed polysaccharides, chitin, vitamins C and E have been applied to aquatic animals and showed a good results to enhance the non- specific immune in aquatic commercial animals significantly. In this article, the current research status of the immunostimulants in aquaculture is summarized and application perspective and consideration of the immunostimulants in aquaculture is discussed.
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