首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Susceptibility of Manduca sexta to Cry1Ab toxin of Bacillus thuringiensis correlates directly to developmental expression of the cadherin receptor BT-R-1
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Susceptibility of Manduca sexta to Cry1Ab toxin of Bacillus thuringiensis correlates directly to developmental expression of the cadherin receptor BT-R-1

机译:苏打曼陀罗对苏云金芽孢杆菌Cry1Ab毒素的敏感性与钙黏着蛋白受体BT-R-1的发育表达直接相关

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摘要

The cadherin receptor BT-R-1, localized in the midgut epithelium of the tobacco hornworm, Manduca sexta, is coupled to programmed oncotic-like cell death, which is triggered by the univalent binding of the Cry1Ab toxin of Bacillus thuringiensis (Bt) to the receptor. Kinetic analysis of BT-R-1 expression during larval development reveals that the density of BT-R-1 on the midgut surface increases dramatically along with an equivalent rise in the concentration of Cry1Ab toxin molecules needed to kill each of the five larval stages of the insect. The increase in the number of BT-R-1 molecules per midgut surface area requires additional toxin molecules to kill older versus younger larvae, as evidenced by the corresponding LC50 values. Based on these observations, we developed a mathematical model to quantify both the expression of BT-R-1 and the susceptibility of M. sexta larvae to the Cry1Ab toxin. Interestingly, the toxin-receptor ratio remains constant during larval development regardless of larval size and mass. This ratio apparently is critical for insecticidal activity and the decrease in toxin effectiveness during larval development is due primarily to the number of effective toxins and available receptors in the larval midgut. Evidently, susceptibility of M. sexta to the Cry1Ab toxin of Bt correlates directly to the developmental expression of BT-R-1 in this insect. (c) 2008 Elsevier Inc. All rights reserved.
机译:钙粘蛋白受体BT-R-1定位于烟草天蛾中肠中肠上皮,与程序性肿瘤样细胞死亡偶联,这由苏云金芽孢杆菌(Bt)的Cry1Ab毒素与受体。幼虫发育过程中BT-R-1表达的动力学分析表明,中肠表面BT-R-1的密度显着增加,同时杀死5个幼虫阶段的Cry1Ab毒素分子浓度也相应增加。昆虫。每个中肠表面积中BT-R-1分子数量的增加需要额外的毒素分子才能杀死幼龄幼虫,这与相应的LC50值相符。基于这些观察,我们开发了一个数学模型来量化BT-R-1的表达和M. sexta幼虫对Cry1Ab毒素的敏感性。有趣的是,无论幼虫的大小和质量如何,在幼虫发育过程中毒素-受体的比率都保持恒定。该比例显然对杀虫活性至关重要,而幼虫发育过程中毒素功效的下降主要是由于幼虫中肠中有效毒素和有效受体的数量增加所致。显然,M。sexta对Bt的Cry1Ab毒素的敏感性与该昆虫中BT-R-1的发育表达直接相关。 (c)2008 Elsevier Inc.保留所有权利。

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