首页> 外文期刊>FEMS Microbiology Letters >Generation of mariner-based transposon insertion mutant library of Bacillus sphaericus 2297 and investigation of genes involved in sporulation and mosquito-larvicidal crystal protein synthesis
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Generation of mariner-based transposon insertion mutant library of Bacillus sphaericus 2297 and investigation of genes involved in sporulation and mosquito-larvicidal crystal protein synthesis

机译:球形芽孢杆菌2297基于水手的转座子插入突变体文库的产生及与孢子形成和蚊幼虫晶体蛋白合成有关的基因研究

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摘要

Bacillus sphaericus has been used with great success in mosquito control programs worldwide. Under conditions of nutrient limitation, it undergoes sporulation via a series of well defined morphological stages. However, only a small number of genes involved in sporulation have been identified. To identify genes associated with sporulation, and to understand the relationship between sporulation and crystal protein synthesis, a random mariner-based transposon insertion mutant library of B. sphaericus strain 2297 was constructed and seven sporulation-defective mutants were selected. Sequencing of the DNA flanking of the transposon insertion identified several genes involved in sporulation. The morphologies of mutants were determined by electron microscopy and synthesis of crystal proteins was analyzed by SDS-PAGE and Western blot. Four mutants blocked at early stages of sporulation failed to produce crystal proteins and had lower larvicidal activity. However, the other three mutants were blocked at later stages and were able to form crystal proteins, and the larvicidal activity was similar to wild type. These results indicated that crystal protein synthesis in B. sphaericus is dependent on sporulation initiation.
机译:球形芽孢杆菌已在全球灭蚊计划中获得了巨大成功。在营养限制的条件下,它会通过一系列明确定义的形态阶段经历孢子形成。但是,仅鉴定了少数与孢子形成有关的基因。为了鉴定与孢子形成有关的基因,并了解孢子形成与晶体蛋白合成之间的关系,构建了一个随机的基于水手的球形芽孢杆菌菌株2297的转座子插入突变体文库,并选择了七个孢子缺陷型突变体。转座子插入的侧翼DNA测序确定了几个与孢子形成有关的基因。通过电子显微镜确定突变体的形态,并通过SDS-PAGE和Western印迹分析晶体蛋白的合成。在孢子形成的早期受阻的四个突变体未能产生晶体蛋白,并具有较低的杀幼虫活性。然而,其他三个突变体在后期被封闭并能够形成晶体蛋白,其杀幼虫活性与野生型相似。这些结果表明球形芽孢杆菌中晶体蛋白的合成取决于孢子形成的起始。

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