The Zymomonas mobilis gene sacB that encodes the extracellular levansucrase was cloned and expressed in Escher~chia coli. The gene product exhibited both sucrose hydrolysis activity and levan forming capability. Sub-cellular fractionation ofE. coli carrying pLSS41 revealed that about 95% of the tota
Chemical and UV mutagenesis inZymomonas mobilis
β Scribed by M. A. Typas; I. Galani
- Publisher
- Springer Netherlands
- Year
- 1992
- Tongue
- English
- Weight
- 627 KB
- Volume
- 87
- Category
- Article
- ISSN
- 0016-6707
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β¦ Synopsis
Mutagenesis of the facultative anaerobe Zymomonas mobilis was accomplished by three different mutagens. Ultra-violet (UV) irradiation, whose effectiveness relies on misrepair of damaged DNA via an error-prone pathway, was a poor mutagen for this organism. Ethyl methane sulphonate (EMS) gave results very similar to UV-irradiation. N-methyl-N'-nitro-N-nitrosoguanidine (MNNG), which is believed to act by multiple mutagenic mechanisms, was the most powerful mutagen, always resulting in a large number of mutants of all types examined (i.e. auxotrophs, antibiotic resistant, heavy metal resistant and ultraviolet sensitive). Reversion frequencies of MNNG-indnced mutants were very low. Evidence is provided that mutagenesis of Z. mobilis is affected by photoreactivation, adaptive response and error-prone repair mechanisms. Moreover, cells treated with alkylating agents and allowed to recover under anaerobic conditions clearly demonstrated that anaerobiosis plays a significant role in repair, but not in the induction of mutants.
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