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Unraveling the Composition of Insecticidal Crystal Proteins in Bacillus thuringiensis: a Proteomics Approach

机译:解开芽孢杆菌中杀虫晶体蛋白的组成:蛋白质组学方法

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Bacillus thuringiensis (Bt) is the most widely used active ingredient for biological insecticides. The composition of δ-endotoxins (Cry and Cyt proteins) in the parasporal crystal determines the toxicity profile of each Bt strain. However, a reliable method for their identification and quantification has not been available, due to the high sequence identity of the genes that encode the δ-endotoxins and the toxins themselves. Here, we have developed an accurate and reproducible mass spectrometry-based method (liquid chromatography-tandem mass spectrometry-multiple reaction monitoring [LC-MS/MS-MRM]) using isotopically labeled proteotypic peptides for each protein in a particular mixture to determine the relative proportion of each δ-endotoxin within the crystal. To validate the method, artificial mixtures containing Cry1Aa, Cry2Aa, and Cry6Aa were analyzed. Determination of the relative abundance of proteins (in molarity) with our method was in good agreement with the expected values. This method was then applied to the most common commercial Bt-based products, DiPel DF, XenTari GD, VectoBac 12S, and Novodor, in which between three and six δ-endotoxins were identified and quantified in each product. This novel approach is of great value for the characterization of Bt-based products, not only providing information on host range, but also for monitoring industrial crystal production and quality control and product registration for Bt-based insecticides.IMPORTANCE Bacillus thuringiensis (Bt)-based biological insecticides are used extensively to control insect pests and vectors of human diseases. Bt-based products provide greater specificity and biosafety than broad-spectrum synthetic insecticides. The biological activity of this bacterium resides in spores and crystals comprising complex mixtures of toxic proteins. We developed and validated a fast, accurate, and reproducible method for quantitative determination of the crystal components of Bt-based products. This method will find clear applications in the improvement of various aspects of the industrial production process of Bt. An important aspect of the production of Bt-based insecticides is its quality control. By specifically quantifying the relative proportion of each of the toxins that make up the crystal, our method represents the most consistent and repeatable evaluation procedure in the quality control of different batches produced in successive fermentations. This method can also contribute to the design of specific culture media and fermentation conditions that optimize Bt crystal composition across a range of Bt strains that target different pestiferous insects. Quantitative information on crystal composition should also prove valuable to phytosanitary product registration authorities that oversee the safety and efficacy of crop protection products.
机译:Bacillus thuringiensis(BT)是最广泛使用的生物杀虫剂活性成分。诱导晶体中的δ-内毒素(Cry和Cyt蛋白)的组成决定了每个BT菌株的毒性曲线。然而,由于编码δ-内臭毒素和毒素本身的基因的高序列同一性,因此尚未使用其鉴定和定量的可靠方法。在这里,我们使用特定混合物中的每种蛋白质的同位素标记的蛋白质肽制定了基于精确和可重复的质谱 - 基于质谱的方法(液相色谱 - 串联质谱 - 多反应[LC-MS / MS-MRM])以确定晶体内每种δ-内臭毒素的相对比例。为了验证方法,分析了含有Cry1AA,Cry2AA和Cry6AA的人工混合物。用我们的方法测定蛋白质的相对丰度(摩尔性)与预期值吻合良好。然后将该方法应用于最常见的商业BT基产品,Dipel DF,Xentari Gd,Vectobac 12s和Novodor,其中在每种产物中鉴定并定量了三到六个δ-内毒素之间。这种新方法对于基于BT的产品的表征具有很大的价值,不仅提供了关于主机范围的信息,而且还用于监测基于BT的杀虫剂的工业晶体生产和质量控制和产品注册。分析芽孢杆菌(BT) - 基于生物杀虫剂广泛用于控制人类疾病的害虫和载体。基于BT的产品提供比广谱合成杀虫剂更高的特异性和生物安全。该细菌的生物活性位于包含复杂毒性蛋白质混合物的孢子和晶体中。我们开发并验证了一种快速,准确,可再现的方法,用于定量测定基于BT的产品的晶体组分。该方法将在改善BT工业生产过程的各个方面的改进方面找到明确的应用。基于BT的杀虫剂的产生的一个重要方面是其质量控制。通过特异性地量化构成晶体的每个毒素的相对比例,我们的方法代表了在连续发酵中产生的不同批次的质量控制中最一致和可重复的评估程序。该方法还可以有助于设计特定培养介质和发酵条件,其优化靶向不同粘性昆虫的一系列BT菌株的BT晶体组合物。关于晶体组合物的定量信息还应该证明对植物检疫产品登记机关的有价值,以监督作物保护产品的安全性和有效性。

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