[PDF] Top 20 Informe de Visita a Supermix fabrica de concreto
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Metabolic engineering of riboflavin production in Ashbya gossypii through pathway optimization
... the riboflavin production process in ...the metabolic control of ribo- flavin production was determined by overexpression of single RIB genes as well as by combining the overexpres- sion of up ... See full document
104
Increased production of inosine and guanosine by means of metabolic engineering of the purine pathway in Ashbya gossypii
... Ashbya gossypii is a filamentous fungus considered to be a paradigm of the environmentally friendly “White Biotechnology” and is probably the most representative example illustrating the importance of ... See full document
117
Utilization of xylose by engineered strains of Ashbya gossypii for the production of microbial oils
... A. gossypii as a competitive biocatalyst for the industrial production of biolipids from ...A. gossypii as a cell factory, which enables the application of systems metabolic ... See full document
6
Metabolic flux analysis in Ashbya gossypii using 13C-labeled yeast extract: industrial riboflavin production under complex nutrient conditions
... flux through the ß-oxidation pathway (1160 ± 41%) and the glyoxylate shunt (580 ± 20%) could be ...ß-oxidation pathway was then converted into malate through the glyoxylate shunt in order to ... See full document
8
Metabolic engineering of a toluene degradation pathway
... upper pathway substrates, and intermediates of the mam-pathway did not, thus confirming the expression of the mam-cleavage pathway only in the presence of primary substrates of the pathway ... See full document
42
The Anaphase-Promoting Complex/Cyclosome Is Required for Anaphase Progression in Multinucleated Ashbya gossypii Cells
... A. gossypii strains expressing myc-tagged APC/C components, the primer pair F1- 13myc and F2-13myc plus the gene name (Table 3) was used to generate PCR ...A. gossypii to generate the strains GVS2, GVS3, ... See full document
10
Metabolic pathway engineering for production of 1,2-propanediol and 1-propanol by Corynebacterium glutamicum
... With the additional deletion of the gene ldh, it was possible to further increase the 1,2-propanediol produc- tion by about 38 % resulting in a yield of 0.343 mol/mol (Fig. 4). Deletion of ldh is a common strategy to ... See full document
16
Inhibition of the key metabolic pathways, glycolysis and lipogenesis, of oral cancer by bitter melon extract
... We next examined changes in glycolysis genes follow- ing BME treatment in human oral cancer cell lines, Cal27 and JHU022. We observed a significant down- regulation of glucose transporter SLC2A1 (GLUT-1) mRNA expression ... See full document
209
Metabolic engineering of the fungal D-galacturonate pathway for L-ascorbic acid production
... Despite several attempts, the ALase activity for L-galL could not be detected from any of EgALase or smp30 ex- pressing strains. In addition to A. niger strains, we have also tried to express both of the ALases in yeast ... See full document
124
“Analysis of Peptide Mass for Characterization of Common Enzymes in Shared Pathways of Escherichia coli and Arabidopsis thaliana” by Prashant Ankur Jain, A. K. Gupta, Krishna Misra, Satendra Singh, India.
... the metabolic pathway were selected for comparative analysis of the metabolic pathway according to EC number using computational ...Various metabolic pathways such as glycolysis cycle, ... See full document
31
Enhanced production of antifungal lipopeptide iturin A by Bacillus amyloliquefaciens LL3 through metabolic engineering and culture conditions optimization
... In this study, B. amyloliquefaciens LL3 was engineered to be an iturin A producer by promoter substitution. Fur- thermore, iturin A production was significantly improved using a combined strategy of culture ... See full document
15
Metabolic Engineering of Microorganisms for the Production of Higher Alcohols
... are metabolic intermediates of amino acid metabolism, can be used for the pro- duction of various branched-chain alcohols, including isobutanol (34–36), 2-methyl-1-butanol (37), and 3-methyl-1-butanol (38), as ... See full document
215
Overexpression of the riboflavin biosynthetic pathway in Pichia pastoris
... synthesis pathway of yeasts, starting from GTP and ribulose-5-phosphate, is well established ...The pathway of Saccharomyces cerevisiae, and the enzymes and metabolites involved, are summarized in Figure ... See full document
240
Metabolic engineering of the L-phenylalanine pathway in Escherichia coli for the production of S- or R-mandelic acid
... the production of S-MA and R-MA in ...the production of S-MA, 4-hydroxymandelate synthase (HmaS) from Amycolatopsis orientalis was used to convert phenylpyruvate to S-MA ... See full document
9
Enhancing 3-hydroxypropionic acid production in combination with sugar supply engineering by cell surface-display and metabolic engineering of Schizosaccharomyces pombe
... Notably, engineering of the availability of acetyl-CoA has been reported to yield a positive effect on 3-HP production, presumably via the increase in the supply of ...the production of 3-HP [11, ... See full document
9
Homologous recombination as the main mechanism for DNA integration and cause of rearrangements in the filamentous ascomycete Ashbya gossypii.
... Rearrangements of transforming DNA have been described in several filamentous asco- mycetes (YELTON et al. In contrast to these reports, all rearrangements found in A[r] ... See full document
8
Metabolic engineering of the 2-ketobutyrate biosynthetic pathway for 1-propanol production in Saccharomyces cerevisiae
... 1-propanol production (Fig. 5a). Since Gly1 constitutes the main pathway to produce gly- cine from threonine in yeast [17], the deletion of GLY1 would decrease the loss of threonine and increase its ... See full document
29
Axl2 Integrates Polarity Establishment, Maintenance, and Environmental Stress Response in the Filamentous Fungus Ashbya gossypii
... no stress exhibited the most significant decrease in growth rate and increase in branching frequency relative to wild-type cells. Axl2 localizes to hyphal tips, branch sites, and septin rings. In order to determine ... See full document
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Limited Functional Redundancy and Oscillation of Cyclins in Multinucleated Ashbya gossypii Fungal Cells
... A. gossypii suggested that, rather than by degradation, AgClb1/2p was kept inactive by an inhibitor AgSic1p ...be through destruction box-mediated anaphase- promoting complex (APC) targeting and proteasomal ... See full document
153
Organization of Organelles within Hyphae of Ashbya gossypii Revealed by Electron Tomography
... membrane-limited organelles used for recycling of cellular com- ponents, including ribosomes and organelles through the vacuo- lar system (27, 28). This process is essential for survival during starvation ... See full document
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