Transformation ofBacillusProtoplasts by Plasmid pTP4 DNA
Takashi Akamatsu, Junichi Sekiguchi
Abstract
Takashi Akamatsu, Junichi Sekiguchi
Abstract
Polyethylene glycol (PEG)-induced protoplast transformation by plasmid pTP4 DNA encoded chloramphenicol resistance determinant was developed for Bacillus subtilis, B. amyloliquefaciens, B. licheniformis, B. megaterium and B. pumilus. Protoplasts were formed by treatment of cells with lysozyme and the transformation frequencies (transformants per regenerants) were in the range of 1.3 × 10−2 to 7.1 × 10−1. Reisolated plasmid DNA prepared from transformants exhibited covalently closed and open circular forms similar to those of the donor DNA. These results indicate that PEG-induced protoplast transformation is an adequate method for plasmid transformation and pTP4 is a useful plasmid as a cloning vector in a wide range of varieties of the genus Bacillus.
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Polyethylene glycol (PEG)-induced protoplast transformation by plasmid pTP4 DNA encoded chloramphenicol resistance determinant was developed for Bacillus subtilis, B. amyloliquefaciens, B. licheniformis, B. megaterium and B. pumilus. Protoplasts were formed by treatment of cells with lysozyme and the transformation frequencies (transformants per regenerants) were in the range of 1.3 × 10−2 to 7.1 × 10−1. Reisolated plasmid DNA prepared from transformants exhibited covalently closed and open circular forms similar to those of the donor DNA. These results indicate that PEG-induced protoplast transformation is an adequate method for plasmid transformation and pTP4 is a useful plasmid as a cloning vector in a wide range of varieties of the genus Bacillus.
Key concepts: Transformation (genetics), Protoplast, Plasmid, Biotechnology, Chemistry, DNA, Botany, Library science