Evaluation of molluscicidal activities of Arisaema tubers extracts on the snail Oncomelania hupensis
Four extracts of Arisaema erubescens tubers by acetic acetal (AAE), benzinum (BZE), n-butanol (NBE) and chloroform (CFE) were obtained to evaluate their molluscicidal activities against the snail Oncomlania hupensis. The responses of choline esterase (ChE), alkaline phosphatase (ALP), esterase (EST)...
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Veröffentlicht in: | Pesticide biochemistry and physiology 2008-11, Vol.92 (3), p.129-132 |
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Sprache: | eng |
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Zusammenfassung: | Four extracts of
Arisaema erubescens tubers by acetic acetal (AAE), benzinum (BZE),
n-butanol (NBE) and chloroform (CFE) were obtained to evaluate their molluscicidal activities against the snail
Oncomlania hupensis. The responses of choline esterase (ChE), alkaline phosphatase (ALP), esterase (EST), superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) to the extracts (NBE) were also investigated. In the four extracts (AAE, BZE, NBE and CFE), NBE showed the highest toxicity on the snails after 48
h exposure. NBE also showed the time- and concentration-dependent effect, for example, the LC
90 values of the NBE were decreased from 365.5
mg/L (24
h) to 36.4
mg/L (96
h). At the end of exposure to NBE (LC
50 concentration), the activities of ChE and ALP in snail tissues (cephalopodium and liver) decreased significantly. Isozyme electrophoresis profiles indicated that responses of isozymes (EST, SOD and GSH-Px) to NBE were more intense in liver than in cephalopodium. After 72
h exposure to NBE, the EST activity in snail liver decreased and some enzyme bands (EST1 and EST4) disappeared. But the activities of SOD 1 and GSH 2 in liver increased after 48
h exposure. The results indicated that NBE was the highest toxic component in the four extracts. The decline of the detoxification ability and the oxidative damage in snail tissues might be the main reason for the molluscicidal activities. |
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ISSN: | 0048-3575 1095-9939 |
DOI: | 10.1016/j.pestbp.2008.07.003 |