Biopesticides Team (LPAP), Centre of Biotechnology of Sfax, P.O. Box '1177', 3018 Sfax, Tunisia.
J Invertebr Pathol. 2013 Oct;114(2):139-43. doi: 10.1016/j.jip.2013.07.003. Epub 2013 Jul 20.
Considering the fact that Agrotis segetum is one of the most pathogenic insects to vegetables and cereals in the world, particularly in Africa, the mode of action of Vip3Aa16 of Bacillus thuringiensis BUPM95 and Cry1Ac of the recombinant strain BNS3Cry-(pHTcry1Ac) has been examined in this crop pest. A. segetum proteases activated the Vip3Aa16 protoxin (90kDa) yielding three bands of about 62, 45, 22kDa and the activated form of the toxin was active against this pest with an LC50 of about 86ng/cm(2). To be active against A. segetum, Cry1Ac protoxin was activated to three close bands of about 60-65kDa. Homologous and heterologous competition binding experiments demonstrated that Vip3Aa16 bound specifically to brush border membrane vesicles (BBMV) prepared from A. segetum midgut and that it does not inhibit the binding of Cry1Ac. Moreover, BBMV protein blotting experiments showed that the receptor of Vip3Aa16 toxin in A. segetum midgut differs from that of Cry1Ac. In fact, the latter binds to a 120kDa protein whereas the Vip3Aa16 binds to a 65kDa putative receptor. The midgut histopathology of Vip3Aa16 fed larvae showed vacuolization of the cytoplasm, brush border membrane lysis, vesicle formation in the goblet cells and disintegration of the apical membrane. The distinct binding properties and the unique protein sequence of Vip3Aa16 support its use as a novel insecticidal agent to control the crop pest A. segetum.
考虑到草地贪夜蛾是世界上对蔬菜和谷物最具致病性的昆虫之一,尤其是在非洲,本研究检测了苏云金芽孢杆菌 BUPM95 的 Vip3Aa16 和重组菌株 BNS3Cry-(pHTcry1Ac) 的 Cry1Ac 对这种作物害虫的作用方式。A. segetum 蛋白酶激活了 Vip3Aa16 原毒素(90kDa),产生了约 62、45、22kDa 的三条带,毒素的激活形式对这种害虫具有约 86ng/cm(2) 的 LC50。为了对 A. segetum 有效,Cry1Ac 原毒素被激活为约 60-65kDa 的三条紧密带。同源和异源竞争结合实验表明,Vip3Aa16 特异性结合 A. segetum 中肠刷状缘膜泡(BBMV),并且它不抑制 Cry1Ac 的结合。此外,BBMV 蛋白印迹实验表明,Vip3Aa16 毒素在 A. segetum 中肠的受体不同于 Cry1Ac。事实上,后者结合到 120kDa 蛋白,而 Vip3Aa16 结合到 65kDa 的假定受体。喂食 Vip3Aa16 的幼虫中肠组织病理学显示细胞质空泡化、刷状缘膜裂解、杯状细胞中囊泡形成以及顶膜解体。Vip3Aa16 独特的结合特性和蛋白序列支持将其用作控制作物害虫 A. segetum 的新型杀虫剂。