Determination and Characterization of IS4Bsu1-Insertion Loci and Identification of a New Insertion Sequence Element of the IS256 Family in a Natto Starter
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概要
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The insertion sequence IS4Bsu1 frequently causes Bacillus subtilis starters for the production of Japanese fermented soybean pasts (natto) to lose the ability to produce poly-γ-glutamate, the viscous material characteristic of natto. Bacillus subtilis NAFM5, a derivative of a natto starter, has six IS4Bsu1 copies on its chromosome. In this study, we determined all six insertion loci of the insertion sequence (IS). One was located in the coding region of yktD, a putative gene involved in polyketide synthesis. Four were located in non-coding regions between iolR and iolA, between tuaA and lytC, between rapI and orf1 (a potential gene of unknown function), and between ynaE and orf3 (a putative gene similar to thiF), and one resided in an intergenic region between divergent possible orf4 and orf5 genes of unknown function. Here we describe the structural features of these loci and discuss the effects of the IS4Bsu1 insertions on the functions of the target gene and the expression of the downstream genes. In addition, we found that strain NAFM5 and commercial natto starters possess eight to 10 loci of another IS of the IS256 family (designated IS256Bsu1) on their chromosomes. IS256Bus1 appeared active in transposition, potentially causing phenotypic alterations in natto starters like those induced by IS4Bsu1.
- 社団法人 日本農芸化学会の論文
- 2007-10-23
著者
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Itoh Yoshifumi
Division Of Applied Microbiology National Food Research Institute
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KIMURA Keitarou
Division of Applied Microbiology, National Food Research Institute
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Itoh Yoshifumi
Div. Of Applied Microbiology National Food Res. Inst.
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Kimura Keitarou
Div. Of Applied Microbiology National Food Res. Inst.
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Kimura Keitarou
Division Of Applied Microbiology National Food Research Institute
関連論文
- Frequency of the Insertion Sequence lS4Bsu1 among Bacillus subtilis Strains Isolated from Fermented Soybean Foods in Southeast Asia(Microbiology & Fermentation Technology)
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- Expression of the pgsB Encoding the Poly-gamma-DL-glutamate Synthetase of Bacillus subtilis (natto)
- Determination and Characterization of IS4Bsu1-Insertion Loci and Identification of a New Insertion Sequence Element of the IS256 Family in a Natto Starter
- Expression of the pgsB Encoding the Poly-gamma-DL-glutamate Synthetase of Bacillus subtilis (natto)
- Loss of poly-γ-glutamic Acid Synthesis of Bacillus subtilis (natto) Due to IS4Bsu1 Translocation to swrA Gene
- Development of a rifampicin-resistant Bacillus subtilis strain for natto-fermentation showing enhanced exoenzyme production(MICROBIAL PHYSIOLOGY AND BIOTECHNOLOGY)