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1.
Electron. j. biotechnol ; 19(1): 33-40, Jan. 2016. ilus
Article in English | LILACS | ID: lil-781168

ABSTRACT

Background: Zymomonas mobilis, as a novel platform for bio-ethanol production, has been attracted more attention and it is very important to construct vectors for the efficient expression of foreign genes in this bacterium. Results: Three shuttle vectors ( pSUZM 1, pSUZM2 and pSUZM3 ) were first constructed with the origins of replication from the chromosome and two native plasmids (pZZM401 and pZZM402) of Z. mobilis ZM4, respectively. The three shuttle vectors were stable in Z. mobilis ZM4 and have 3,32 and 27 copies, respectively. The promoter Ppdc (a), from the pyruvate decarboxylase gene, was clonedinto the shuttle vectors, generatingthe expressionvectors pSUZM1(2, 3)a. The codon-optimized glucoamylase gene from Aspergillus awamori combined with the signal peptide sequence from the alkaline phosphatase gene of Z. mobilis was cloned into pSUZM1(2, 3)a, resulting in the plasmids pSUZM1a-GA, pSUZM2a-GA and pSUZM3a-GA, respectively. After transforming these plasmids into Z. mobilis ZM4, the host was endowed with glucoamylase activity for starch hydrolysis. Both pSUZM2a-GA and pSUZM3a-GA were more efficientatproducingglucoamylase thanpSUZM1a-GA. Conclusions: These results indicated that these expression vectors are useful tools for gene expression in Z. mobilis and this could provide a solid foundation for further studies of heterologous gene expression in Z. mobilis.


Subject(s)
Gene Expression/genetics , Zymomonas/genetics , Zymomonas/metabolism , Genetic Vectors/genetics , Plasmids , Glucan 1,4-alpha-Glucosidase , Fermentation , Real-Time Polymerase Chain Reaction
2.
Electron. j. biotechnol ; 13(5): 12-13, Sept. 2010. ilus, tab
Article in English | LILACS | ID: lil-591894

ABSTRACT

This study aimed to assess the use of mesquite pods hydrated mash as biomass for the growth of Saccharomyces cerevisiae UFEPEDA-1012 and Zymomonas mobilis UFEPEDA-205 and for ethanol production using a submerged fermentation. A 2³ factorial design was used to analyze the effects of the type of microorganism, time of fermentation and condition of cultivation on the ethanol production in mesquite pods mash (30 g 100 mL-1). From the obtained results the hydrated mesquite pods mash presented as a good substrate for the growth of S. cerevisiae and Z. mobilis in comparison to the standard media. The effect that most affected the ethanol production was the type of microorganism. The highest ethanol concentration (141.1 gL-1) was found when Z. mobilis was cultivated in mesquite pods mash under static condition for 36 hrs. Ethanol production by S. cerevisiae was higher (44.32 gL-1) after 18 hrs of fermentation under static condition. According to these results, the mesquite pods could be known as an alternative substrate to be used for biotechnological purposes, mainly for ethanol production.


Subject(s)
Ethanol/metabolism , Prosopis/chemistry , Saccharomyces cerevisiae/growth & development , Zymomonas/growth & development , Biomass , Biotechnology/methods , Chromatography, Gas , Culture Media , Fermentation , Saccharomyces cerevisiae/metabolism , Time Factors , Zymomonas/metabolism
3.
ABCD (São Paulo, Impr.) ; 13(1/2): 3-6, jan.-jun. 1998. ilus, tab
Article in English | LILACS | ID: lil-259964

ABSTRACT

A peritonite bacteriana permanece como causa significante de mortalidade e morbidade no paciente cirurgico. O objetivo desta investigacao foi analisar a influencia do fermentado de Zymomonas mobilis, como fator modulador na reducao da mortalidade associada a sepse intraperitoneal...


Subject(s)
Animals , Mice , Peritonitis/therapy , Zymomonas/metabolism , Antibiosis , Peritonitis/prevention & control
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