Senthilkumar V, Rameshkumar N, Busby S J W, Gunasekaran P
Department of Microbial Technology, Centre for Excellence in Genomic Sciences, School of Biological Sciences, Madurai Kamaraj University, Madurai, India.
J Appl Microbiol. 2004;96(4):671-6. doi: 10.1111/j.1365-2672.2003.02169.x.
Disruption of the extracellular Zymomonas mobilis sucrase gene (sacC) to improve levan production.
A PCR-amplified tetracycline resistance cassette was inserted within the cloned sacC gene in pZS2811. The recombinant construct was transferred to Z. mobilis by electroporation. The Z. mobilis sacC gene, encoding an efficient extracellular sucrase, was inactivated. A sacC defective mutant of Z. mobilis, which resulted from homologous recombination, was selected and the sacC gene disruption was confirmed by PCR. Fermentation trials with this mutant were conducted, and levansucrase activity and levan production were measured. In sucrose medium, the sacC mutant strain produced threefold higher levansucrase (SacB) than the parent strain. This resulted in higher levels of levan production, whilst ethanol production was considerably decreased.
Zymomonas mobilis sacC gene encoding an extracellular sucrase was inactivated by gene disruption. This sacC mutant strain produced higher level of levan in sucrose medium because of the improved levansucrase (SacB) than the parent strain.
The Z. mobilis CT2, sacC mutant produces high level of levansucrase (SacB) and can be used for the production of levan.
破坏运动发酵单胞菌的胞外蔗糖酶基因(sacC)以提高果聚糖产量。
将PCR扩增的四环素抗性盒插入pZS2811中克隆的sacC基因内。通过电穿孔将重组构建体转移到运动发酵单胞菌中。编码高效胞外蔗糖酶的运动发酵单胞菌sacC基因被灭活。筛选出因同源重组产生的运动发酵单胞菌sacC缺陷型突变体,并通过PCR确认sacC基因的破坏。用该突变体进行发酵试验,测定果聚糖蔗糖酶活性和果聚糖产量。在蔗糖培养基中,sacC突变株产生的果聚糖蔗糖酶(SacB)比亲本菌株高3倍。这导致果聚糖产量更高,而乙醇产量显著降低。
通过基因破坏使编码胞外蔗糖酶的运动发酵单胞菌sacC基因失活。该sacC突变株在蔗糖培养基中由于果聚糖蔗糖酶(SacB)的改善而产生了更高水平的果聚糖。
运动发酵单胞菌CT2的sacC突变体产生高水平的果聚糖蔗糖酶(SacB),可用于果聚糖的生产。