Ferré J, Real M D, Van Rie J, Jansens S, Peferoen M
Departamento de Genética, Facultad de Ciencias Biologicas, Universitat de València, Spain.
Proc Natl Acad Sci U S A. 1991 Jun 15;88(12):5119-23. doi: 10.1073/pnas.88.12.5119.
The biochemical mechanism for resistance to Bacillus thuringiensis crystal proteins was studied in a field population of diamondback moths (Plutella xylostella) with a reduced susceptibility to the bioinsecticidal spray. The toxicity and binding characteristics of three crystal proteins [CryIA(b), CryIB, and CryIC] were compared between the field population and a laboratory strain. The field population proved resistant (greater than 200-fold compared with the laboratory strain) to CryIA(b), one of the crystal proteins in the insecticidal formulation. Binding studies showed that the two strains differ in a membrane receptor that recognizes CryIA(b). This crystal protein did not bind to the brush-border membrane of the midgut epithelial cells of the field population, either because of strongly reduced binding affinity or because of the complete absence of the receptor molecule. Both strains proved fully susceptible to the CryIB and CryIC crystal proteins, which were not present in the B. thuringiensis formulation used in the field. Characteristics of CryIB and CryIC binding to brush-border membranes of midgut epithelial cells were virtually identical in the laboratory and the field population.
在小菜蛾田间种群中研究了对苏云金芽孢杆菌晶体蛋白产生抗性的生化机制,该种群对生物杀虫喷雾剂的敏感性降低。比较了田间种群和实验室品系对三种晶体蛋白[CryIA(b)、CryIB和CryIC]的毒性和结合特性。田间种群对杀虫制剂中的一种晶体蛋白CryIA(b)具有抗性(与实验室品系相比大于200倍)。结合研究表明,这两个品系在识别CryIA(b)的膜受体方面存在差异。这种晶体蛋白不与田间种群中肠上皮细胞的刷状缘膜结合,要么是因为结合亲和力大幅降低,要么是因为完全不存在受体分子。两个品系对CryIB和CryIC晶体蛋白均表现出完全敏感性,这两种晶体蛋白不存在于田间使用的苏云金芽孢杆菌制剂中。在实验室品系和田间种群中,CryIB和CryIC与中肠上皮细胞刷状缘膜的结合特性几乎相同。