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首页> 外文期刊>Applied and Environmental Microbiology >Cross-resistance of the diamondback moth indicates altered interactions with domain II of Bacillus thuringiensis toxins.
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Cross-resistance of the diamondback moth indicates altered interactions with domain II of Bacillus thuringiensis toxins.

机译:小菜蛾的交叉抗性表明与苏云金芽孢杆菌毒素的结构域II的相互作用发生了改变。

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We compared responses to six insecticidal crystal proteins from Bacillus thuringiensis by a Cry1A-resistant strain (NO-QA) and a susceptible strain (LAB-P) of the diamondback moth, Plutella xylostella. The resistant strain showed > 100-fold cross-resistance to Cry1J and to H04, a hybrid with domains I and II of Cry1Ab and domain III or Cry1C. Cross-resistance was sixfold to Cry1Bb and threefold to Cry1D. The potency of Cry1I did not differ significantly between the resistant and susceptible strains. Cry2B did not kill resistant or susceptible larvae. By combining these new data with previously published results, we classified responses to 14 insecticidal crystal proteins by strains NO-QA and LAB-P. NO-QA showed high levels of resistance to Cry1Aa, Cry1Ab, and Cry1Ac and high levels of cross-resistance to Cry1F, Cry1J, and H04. Cross-resistance was low or nil to Cry1Ba, Cry1Bb, Cry1C, Cry1D, Cry1I, and Cry2A. Cry1E and Cry2B showed little or no toxicity to susceptible or resistant larvae. In dendrograms based on levels of amino acid sequence similarity among proteins, Cry1F and Cry1J clustered together with Cry1A proteins for domain II, but not for domain I or III. High levels of cross-resistance to Cry1Ab-Cry1C hybrid H04 show that although Cry1C is toxic to NO-QA, domain III or Cry1C is not sufficient to restore toxicity when it is combined with domains I and II of Cry1Ab. Thus, diamondback moth strain NO-QA cross-resistance extends beyond the Cry1A family of proteins to at least two other families that exhibit high levels of amino sequence similarity with Cry1A in domain II (Cry1F and Cry1J) and to a protein that is identical to Cry1Ab in domain II (H04). The results of this study imply that resistance to Cry1A alters interactions between the insect and domain II.
机译:我们比较了响尾蛇小菜蛾小菜蛾对Cry1A抗性菌株(NO-QA)和敏感菌株(LAB-P)对苏云金芽胞杆菌对六种杀虫晶体蛋白的反应。抗性菌株对Cry1J和H04的交叉抗性> 100倍,H04与Cry1Ab的结构域I和II和结构域III或Cry1C杂交。交叉电阻是Cry1Bb的六倍,而Cry1D是三倍。在耐药菌株和易感菌株之间,Cry1I的效力没有显着差异。 Cry2B不能杀死抗性或易感幼虫。通过将这些新数据与以前发表的结果相结合,我们对NO-QA和LAB-P菌株对14种杀虫晶体蛋白的反应进行了分类。 NO-QA对Cry1Aa,Cry1Ab和Cry1Ac表现出高水平的抵抗力,对Cry1F,Cry1J和H04表现出高水平的交叉抵抗力。与Cry1Ba,Cry1Bb,Cry1C,Cry1D,Cry1I和Cry2A的交叉电阻较低或为零。 Cry1E和Cry2B对敏感或抗性幼虫几乎没有毒性。在基于蛋白质之间氨基酸序列相似性水平的树状图中,Cry1F和Cry1J与Cry1A蛋白质聚集在一起形成域II,但不聚集域I或III。对Cry1Ab-Cry1C杂种H04的高交叉抗性表明,尽管Cry1C对NO-QA有毒性,但当将Cry1C与Cry1Ab的结构域I和II结合时,结构域III或Cry1C不足以恢复毒性。因此,小菜蛾蛾的NO-QA交叉抗性超出了Cry1A蛋白家族的范围,延伸到至少两个与域II中的Cry1A氨基酸序列相似性高的家族(Cry1F和Cry1J),并且延伸至与域II(H04)中的Cry1Ab。这项研究的结果表明,对Cry1A的抗性会改变昆虫与结构域II之间的相互作用。

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