biochemical characterisation of α-glucosidase and β-glucosidase in the alimentary canal of larval leptinotarsa decemlineata say, 1824 (coleoptera: chrysomelidae)

biochemical characterisation of α-glucosidase and β-glucosidase in the alimentary canal of larval leptinotarsa decemlineata say, 1824 (coleoptera: chrysomelidae)

;Kazzazi Majid;Dehghanikhah Fahimeh;Madadi Hossein;Hossseininaveh Vahid
society 2014 Vol. 83 pp. 281-294
243
majid2014polishbiochemical

Abstract

Host plant resistance is an environmentally safe method used for reducing a pest population. Basically, when developing resistant cultivars one needs to study the biochemical characteristics of the digestive enzymes in the insect’s midgut. In this study, the activities of α- and β-glucosidase were determined from Leptinotarsa decemlineata midgut using p-nitrophenyl-α-Dglucopyranoside and p-nitrophenyl-β-D-glucopyranoside as substrates respectively. The results showed that the specific activity of α- and β-glucosidase from 4th instar larvae midguts of L. decemlineata were 5.14 and 5.48 Umg-1 protein respectively. The activity of α-glucosidase was optimal at pH 4, whereas the maximum activity of β-glucosidase in the midgut of L. decemlineata occurred at pH 4-5.5. Both enzymes were stable at pH 3-8 over an incubation time of 8 hours. The respective activities of α- and β-glucosidase were at their highest at 45 °C and 50 °C, but they were not stable at 50 °C during an incubation time of 8 days. Furthermore, our data showed that MgCl2, Tris and urea have a moderate but SDS a severe inhibitory effect on enzyme activity. Biochemical characterisation revealed one and three bands of α- and β-glucosidase activities in the midgut of L. decemlineata respectively.

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151196
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