首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Binding of Insecticidal Crystal Proteins of Bacillus thuringiensis to the Midgut Brush Border of the Cabbage Looper Trichoplusia ni (Hübner) (Lepidoptera: Noctuidae) and Selection for Resistance to One of the Crystal Proteins
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Binding of Insecticidal Crystal Proteins of Bacillus thuringiensis to the Midgut Brush Border of the Cabbage Looper Trichoplusia ni (Hübner) (Lepidoptera: Noctuidae) and Selection for Resistance to One of the Crystal Proteins

机译:苏云金芽孢杆菌的杀虫晶体蛋白与白菜弯角线虫中肠刷缘的结合(鳞翅目:夜蛾科)以及对一种晶体蛋白的抗性选择

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摘要

The susceptibility of Trichoplusia ni larvae to several Bacillus thuringiensis insecticidal crystal proteins (ICPs) was tested. Neonatal larvae proved to be susceptible to solubilized trypsin-treated CryIA(a), CryIA(b), and CryIA(c) (50% lethal concentrations [LC50s], 570, 480, and 320 ng/cm2, respectively) but showed little susceptibility to CryIB and CryID (LC50s, 5,640 and 2,530 ng/cm2, respectively). The toxicity of ICPs was correlated to binding to the epithelial brush border of the midgut, as revealed by immunocytochemical staining with monoclonal antibodies. In vitro binding experiments with iodinated ICPs and brush border membrane vesicles indicated that CryIA(b) and CryIA(c) share the same high-affinity binding site, whereas CryIA(a) binds to a different one. The affinities of CryIA(b) and CryIA(c) for the binding site were similar (Kd = 3.6 and 4.7 nM, respectively), and the mean binding-site concentration was 0.71 pmol/mg of vesicle protein. Selection of a population with increasing concentrations of CryIA(b) produced 31-fold resistance in seven generations. The realized heritability (h2) was 0.19. The increase of homozygosity (for resistance factors) as selection proceeded was reflected in the increase in the slopes of the dose-mortality curves. Resistance was specific for CryIA(b) and did not extend to CryIA(a) or even to CryIA(c). This result was not predicted by the binding-site model, in which CryIA(b) and CryIA(c) bind to the same high-affinity binding site. This result may suggest a more complicated relationship between in vitro binding of ICPs to specific sites in the epithelial membrane of the midgut and the in vivo toxic effect.
机译:测试了Trichoplusia ni niva幼虫对几种苏云金芽孢杆菌杀虫晶体蛋白(ICPs)的敏感性。事实证明,新生幼虫对经胰蛋白酶处理的CryIA(a),CryIA(b)和CryIA(c)敏感(50%致死浓度[LC50s],570、480和320 ng / cm 2 ),但对CryIB和CryID的敏感性很小(分别为LC50、5,640和2,530 ng / cm 2 )。 ICPs的毒性与与中肠上皮刷状缘的结合相关,如单克隆抗体的免疫细胞化学染色所揭示。碘化ICP和刷状缘膜囊泡的体外结合实验表明CryIA(b)和CryIA(c)共享相同的高亲和力结合位点,而CryIA(a)结合至另一个。 CryIA(b)和CryIA(c)对结合位点的亲和力相似(分别为Kd = 3.6和4.7 nM),平均结合位点浓度为0.71 pmol / mg囊泡蛋白。选择高浓度CryIA(b)的种群在7代中产生了31倍的抗药性。实现的遗传力(h 2 )为0.19。随着选择的进行,纯合性(针对耐药因子)的增加反映在剂量死亡率曲线的斜率增加中。抗药性是针对CryIA(b)的特异性,并没有扩展到CryIA(a)甚至CryIA(c)。该结果不是由结合位点模型预测的,在结合位点模型中,CryIA(b)和CryIA(c)结合到相同的高亲和力结合位点。此结果可能表明ICP与中肠上皮膜中特定部位的体外结合与体内毒性作用之间存在更复杂的关系。

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