首页> 美国卫生研究院文献>Journal of Bacteriology >srfA is an operon required for surfactin production competence development and efficient sporulation in Bacillus subtilis.
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srfA is an operon required for surfactin production competence development and efficient sporulation in Bacillus subtilis.

机译:srfA是枯草芽孢杆菌中表面活性素生产能力发展和有效孢子形成所需的操纵子。

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摘要

The srfA locus of Bacillus subtilis is defined by a transposon Tn917 insertion and is required for production of the peptide secondary metabolite surfactin. The srfA locus was isolated by cloning the DNA flanking srfA::Tn917 insertions followed by chromosome walking. The cloned region is an operon of over 25 kb which covers the transcription initiation region but not the intact 3' end of srfA. csh-293, which was previously identified as a Tn917lac mutation that impairs competence development and causes a conditional defect in sporulation, was known to be located in the vicinity of the srfA locus within the B. subtilis genome. The csh-293::Tn917lac mutation was discovered to cause a defect in surfactin production and was shown to be located in the srfA operon by its cotransformation with srfA mutations and by Southern hybridization analysis. Insertion mutations in srfA, created by the chromosomal integration of plasmids bearing overlapping srfA DNA fragments, were examined for their effects on surfactin production, competence, and sporulation. All three processes were found to require the intact 5' half of the srfA operon, whereas the 3' half of srfA was found to be required for sporulation and surfactin production but not competence. These experiments show that srfA gene products function in B. subtilis cell specialization and differentiation.
机译:枯草芽孢杆菌的srfA基因座由转座子Tn917插入定义,是产生肽二级代谢物表面活性素所必需的。 srfA基因座是通过克隆srfA :: Tn917插入侧翼的DNA,然后进行染色体漫步而分离的。克隆的区域是一个超过25 kb的操纵子,其覆盖转录起始区域,但不覆盖srfA的完整3'末端。 csh-293,以前被鉴定为Tn917lac突变,可削弱能力发展并导致孢子形成条件缺陷,已知位于枯草芽孢杆菌基因组中srfA基因座附近。发现csh-293 :: Tn917lac突变会导致表面活性素产生缺陷,并通过与srfA突变的共转化和Southern杂交分析显示其位于srfA操纵子中。检查了srfA的插入突变,该突变是由带有重叠srfA DNA片段的质粒的染色体整合产生的,它们对表面活性素产生,能力和孢子形成的影响。发现所有这三个过程都需要完整的srfA操纵子的5'一半,而发现srfA的3'一半是孢子形成和表面活性素生产所必需的,而不是能力。这些实验表明,srfA基因产物在枯草芽孢杆菌细胞的专业化和分化中起作用。

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