Zou_2014_J.Mol.Neurosci_53_424

Reference

Title : Characterizations of Cholinesterases in Golden Apple Snail (Pomacea canaliculata) - Zou_2014_J.Mol.Neurosci_53_424
Author(s) : Zou XH , Xie HQ , Zha GC , Chen VP , Sun YJ , Zheng YZ , Tsim KWK , Dong TTX , Choi RC , Luk WK
Ref : Journal of Molecular Neuroscience , 53 :424 , 2014
Abstract :

Cholinesterases (ChEs) have been identified in vertebrates and invertebrates. Inhibition of ChE activity in invertebrates, such as bivalve molluscs, has been used to evaluate the exposure of organophosphates, carbamate pesticides, and heavy metals in the marine system. The golden apple snail (Pomacea canaliculata) is considered as one of the worst invasive alien species harmful to rice and other crops. The ChE(s) in this animal, which has been found recently, but poorly characterized thus far, could serve as biomarker(s) for environmental surveillance as well as a potential target for the pest control. In this study, the tissue distribution, substrate preference, sensitivity to ChE inhibitors, and molecular species of ChEs in P. canaliculata were investigated. It was found that the activities of both AChE and BChE were present in all test tissues. The intestine had the most abundant ChE activities. Both enzymes had fair activities in the head, kidney, and gills. The BChE activity was more sensitive to tetra-isopropylpyrophosphoramide (iso-OMPA) than the AChE. Only one BChE molecular species, 5.8S, was found in the intestine and head, whereas two AChE species, 5.8S and 11.6S, were found there. We propose that intestine ChEs of this snail may be potential biomarkers for manipulating pollutions.

PubMedSearch : Zou_2014_J.Mol.Neurosci_53_424
PubMedID: 24217797

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Citations formats

Zou XH, Xie HQ, Zha GC, Chen VP, Sun YJ, Zheng YZ, Tsim KWK, Dong TTX, Choi RC, Luk WK (2014)
Characterizations of Cholinesterases in Golden Apple Snail (Pomacea canaliculata)
Journal of Molecular Neuroscience 53 :424

Zou XH, Xie HQ, Zha GC, Chen VP, Sun YJ, Zheng YZ, Tsim KWK, Dong TTX, Choi RC, Luk WK (2014)
Journal of Molecular Neuroscience 53 :424