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  4. Construction of Tn917ac1, a transposon useful for mutagenesis and cloning of Bacillus subtilis genes
 
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Construction of Tn917ac1, a transposon useful for mutagenesis and cloning of Bacillus subtilis genes

Journal
Gene
Journal Volume
150
Journal Issue
1
Pages
129-134
Date Issued
1994
Author(s)
Li-Kwan C.
Chyi-Liang C.
Yu-Sun C.
Johannes Scheng-Ming Tschen, Yih-Ming C.
Shih-Tung L.
LI-KWAN CHANG  
DOI
10.1016/0378-1119(94)90871-0
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/458349
URL
https://www2.scopus.com/inward/record.uri?eid=2-s2.0-0027987370&doi=10.1016%2f0378-1119%2894%2990871-0&partnerID=40&md5=eeb8e77e4eea1c1012e5fce5f7211d67
Abstract
A Tn917 derivative was constructed for the purposes of mutagenesis and cloning of Bacillus subtilis genes. This transposon, Tn917ac1 (4.6 kb), consisted of terminal inverted repeats of Tn917, the res sequence, a ColE1 origin of replication (ori) and two drug-resistance genes. The plasmid carrying this transposon, named pD917, contained the erm-tnpR-tnpA gene cluster of Tn917 and a temperature-sensitive ori of pE194. For the purpose of mutagenesis, transposition of Tn917ac1 was induced by culturing strains harboring pD917 in a medium containing a low concentration of erythromycin. Cells with a Tn917ac1 insertion in the chromosome were selected on agar containing chloramphenicol after heat treatment to eliminate the plasmidic form of pD917. DNA fragments adjacent to Tn917ac1 could be cloned by restriction digestion of the chromosomal DNA and by transforming the self-ligated restriction fragments into Escherichia coli. Sequence analysis revealed that Tn917ac1 was integrated into the chromosome of B. subtilis by transposition in a recE strain and by transposition or integration of pD917 in a wild-type strain. Tn917ac1 has been demonstrated to be useful for mutating and cloning of the genes involved in the biosynthesis of fengycin in B. subtilis F29-3.
SDGs

[SDGs]SDG6

Type
journal article

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