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Molecular Mechanism Underlying the Entomotoxic Effect of Colocasia esculenta Tuber Agglutinin against Dysdercus cingulatus

机译:香芋芋块茎凝集素对丁香假单胞菌杀虫作用的分子机制

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摘要

Colocasia esculenta tuber agglutinin (CEA), a mannose binding lectin, exhibits insecticidal efficacy against different hemipteran pests. Dysdercus cingulatus, red cotton bug (RCB), has also shown significant susceptibility to CEA intoxication. However, the molecular basis behind such entomotoxicity of CEA has not been addressed adequately. The present study elucidates the mechanism of insecticidal efficacy of CEA against RCB. Confocal and scanning electron microscopic analyses documented CEA binding to insect midgut tissue, resulting in an alteration of perimicrovillar membrane (PMM) morphology. Internalization of CEA into insect haemolymph and ovary was documented by western blotting analyses. Ligand blot followed by mass spectrometric identification revealed the cognate binding partners of CEA as actin, ATPase and cytochrome P450. Deglycosylation and mannose inhibition assays indicated the interaction to probably be mannose mediated. Bioinformatic identification of putative glycosylation or mannosylation sites in the binding partners further supports the sugar mediated interaction. Correlating entomotoxicity of CEA with immune histological and binding assays to the insect gut contributes to a better understanding of the insecticidal potential of CEA and endorses its future biotechnological application.
机译:香芋块茎凝集素(CEA),一种甘露糖结合凝集素,对不同的半翅目害虫具有杀虫功效。红色棉虫(RCB)的丁香假单胞菌也显示出对CEA中毒的显着易感性。然而,CEA如此毒性的分子基础尚未得到充分解决。本研究阐明了CEA对RCB的杀虫功效机理。共聚焦和扫描电子显微镜分析记录了CEA与昆虫中肠组织的结合,导致微绒毛膜(PMM)形态的改变。通过蛋白质印迹分析证明CEA内化为昆虫的血淋巴和卵巢。配体印迹和质谱鉴定表明,CEA的同源结合伴侣为肌动蛋白,ATPase和细胞色素P450。去糖基化和甘露糖抑制测定表明相互作用可能是甘露糖介导的。结合伴侣中假定的糖基化或甘露糖基化位点的生物信息学鉴定进一步支持糖介导的相互作用。 CEA的昆虫毒性与免疫组织学和对昆虫肠道的结合试验的相关性有助于更好地了解CEA的杀虫潜力,并支持其未来的生物技术应用。

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