enterobacter aerogenes Search Results


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Cusabio recombinant enterobacter aerogenes ribitol 2 dehydrogenase rdh
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NCIMB Ltd enterobacter aerogenes 10102
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Inserm Transfert enterobacter aerogenes clinical isolates
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NCIMB Ltd enterobacter aerogenes
Enterobacter Aerogenes, supplied by NCIMB Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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MBL Life science enterobacter aerogenes
Enterobacter Aerogenes, supplied by MBL Life science, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Tajima Shoji Co Ltd genetically modified enterobacter aerogenes
Co‐fermentation of various carbon sources by <t>Enterobacter</t> sp. LU 1 to enhance the production of succinic acid. glu – glucose; fru – fructose; gal – galactose; lac – lactose; mal – maltose; glucu. acid – glucuronic acid; gal. acid – galacturonic acid; gluco. acid – gluconic acid; ara – arabinose; ryb – ribose; xyl – xylose; man – mannose; asc. acid – ascorbic acid; sac – saccharose; gly – glycerol; manni – mannitol; fum. acid – fumaric acid; mal. acid – malic acid; oxalo. acid – oxaloacetic acid; lac. acid – lactic acid; phyt. acid – phytic acid; sor – sorbitol. Succinic acid ( SA ); glycerol ( GLY ). Percentage of glycerol utilization (□); overall succinic acid yield (calculated as gram product (succinate)/gram substrate(glycerol and lactose) consumed) (■). The cultivations were conducted at 37°C in tightly capped 20 ml serum bottles with 8 ml of medium and stirring at 160 rpm. Data are the means ± SD s of three parallel experiments.
Genetically Modified Enterobacter Aerogenes, supplied by Tajima Shoji Co Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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NCIMB Ltd 8545 enterobacter aerogenes
Co‐fermentation of various carbon sources by <t>Enterobacter</t> sp. LU 1 to enhance the production of succinic acid. glu – glucose; fru – fructose; gal – galactose; lac – lactose; mal – maltose; glucu. acid – glucuronic acid; gal. acid – galacturonic acid; gluco. acid – gluconic acid; ara – arabinose; ryb – ribose; xyl – xylose; man – mannose; asc. acid – ascorbic acid; sac – saccharose; gly – glycerol; manni – mannitol; fum. acid – fumaric acid; mal. acid – malic acid; oxalo. acid – oxaloacetic acid; lac. acid – lactic acid; phyt. acid – phytic acid; sor – sorbitol. Succinic acid ( SA ); glycerol ( GLY ). Percentage of glycerol utilization (□); overall succinic acid yield (calculated as gram product (succinate)/gram substrate(glycerol and lactose) consumed) (■). The cultivations were conducted at 37°C in tightly capped 20 ml serum bottles with 8 ml of medium and stirring at 160 rpm. Data are the means ± SD s of three parallel experiments.
8545 Enterobacter Aerogenes, supplied by NCIMB Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Purdue University Cytometry enterobacter aerogenes
Co‐fermentation of various carbon sources by <t>Enterobacter</t> sp. LU 1 to enhance the production of succinic acid. glu – glucose; fru – fructose; gal – galactose; lac – lactose; mal – maltose; glucu. acid – glucuronic acid; gal. acid – galacturonic acid; gluco. acid – gluconic acid; ara – arabinose; ryb – ribose; xyl – xylose; man – mannose; asc. acid – ascorbic acid; sac – saccharose; gly – glycerol; manni – mannitol; fum. acid – fumaric acid; mal. acid – malic acid; oxalo. acid – oxaloacetic acid; lac. acid – lactic acid; phyt. acid – phytic acid; sor – sorbitol. Succinic acid ( SA ); glycerol ( GLY ). Percentage of glycerol utilization (□); overall succinic acid yield (calculated as gram product (succinate)/gram substrate(glycerol and lactose) consumed) (■). The cultivations were conducted at 37°C in tightly capped 20 ml serum bottles with 8 ml of medium and stirring at 160 rpm. Data are the means ± SD s of three parallel experiments.
Enterobacter Aerogenes, supplied by Purdue University Cytometry, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Boehringer Mannheim glycerol dehydrogenase from enterobacter aerogenes
Co‐fermentation of various carbon sources by <t>Enterobacter</t> sp. LU 1 to enhance the production of succinic acid. glu – glucose; fru – fructose; gal – galactose; lac – lactose; mal – maltose; glucu. acid – glucuronic acid; gal. acid – galacturonic acid; gluco. acid – gluconic acid; ara – arabinose; ryb – ribose; xyl – xylose; man – mannose; asc. acid – ascorbic acid; sac – saccharose; gly – glycerol; manni – mannitol; fum. acid – fumaric acid; mal. acid – malic acid; oxalo. acid – oxaloacetic acid; lac. acid – lactic acid; phyt. acid – phytic acid; sor – sorbitol. Succinic acid ( SA ); glycerol ( GLY ). Percentage of glycerol utilization (□); overall succinic acid yield (calculated as gram product (succinate)/gram substrate(glycerol and lactose) consumed) (■). The cultivations were conducted at 37°C in tightly capped 20 ml serum bottles with 8 ml of medium and stirring at 160 rpm. Data are the means ± SD s of three parallel experiments.
Glycerol Dehydrogenase From Enterobacter Aerogenes, supplied by Boehringer Mannheim, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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NCIMB Ltd enterobacter aerogenes ncimb 101p2
Antimicrobial activity induction on TSA.
Enterobacter Aerogenes Ncimb 101p2, supplied by NCIMB Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Bristol Myers enterobacter aerogenes strain 810
Antimicrobial activity induction on TSA.
Enterobacter Aerogenes Strain 810, supplied by Bristol Myers, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Achillion inc enterobacter aerogenes
Antimicrobial activity induction on TSA.
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Image Search Results


Co‐fermentation of various carbon sources by Enterobacter sp. LU 1 to enhance the production of succinic acid. glu – glucose; fru – fructose; gal – galactose; lac – lactose; mal – maltose; glucu. acid – glucuronic acid; gal. acid – galacturonic acid; gluco. acid – gluconic acid; ara – arabinose; ryb – ribose; xyl – xylose; man – mannose; asc. acid – ascorbic acid; sac – saccharose; gly – glycerol; manni – mannitol; fum. acid – fumaric acid; mal. acid – malic acid; oxalo. acid – oxaloacetic acid; lac. acid – lactic acid; phyt. acid – phytic acid; sor – sorbitol. Succinic acid ( SA ); glycerol ( GLY ). Percentage of glycerol utilization (□); overall succinic acid yield (calculated as gram product (succinate)/gram substrate(glycerol and lactose) consumed) (■). The cultivations were conducted at 37°C in tightly capped 20 ml serum bottles with 8 ml of medium and stirring at 160 rpm. Data are the means ± SD s of three parallel experiments.

Journal: Microbial Biotechnology

Article Title: Enterobacter sp. LU 1 as a novel succinic acid producer – co‐utilization of glycerol and lactose

doi: 10.1111/1751-7915.12458

Figure Lengend Snippet: Co‐fermentation of various carbon sources by Enterobacter sp. LU 1 to enhance the production of succinic acid. glu – glucose; fru – fructose; gal – galactose; lac – lactose; mal – maltose; glucu. acid – glucuronic acid; gal. acid – galacturonic acid; gluco. acid – gluconic acid; ara – arabinose; ryb – ribose; xyl – xylose; man – mannose; asc. acid – ascorbic acid; sac – saccharose; gly – glycerol; manni – mannitol; fum. acid – fumaric acid; mal. acid – malic acid; oxalo. acid – oxaloacetic acid; lac. acid – lactic acid; phyt. acid – phytic acid; sor – sorbitol. Succinic acid ( SA ); glycerol ( GLY ). Percentage of glycerol utilization (□); overall succinic acid yield (calculated as gram product (succinate)/gram substrate(glycerol and lactose) consumed) (■). The cultivations were conducted at 37°C in tightly capped 20 ml serum bottles with 8 ml of medium and stirring at 160 rpm. Data are the means ± SD s of three parallel experiments.

Article Snippet: In a previous study, succinic acid was produced by genetically modified Enterobacter aerogenes (Tajima et al ., ) at 34°C, whereas for Corynebacterium glutamicum strains, temperatures between 30 and 33°C were often employed (Okino et al ., ; Wang et al ., ).

Techniques:

Antimicrobial activity induction on TSA.

Journal: Antibiotics

Article Title: Optimization of Screening Media to Improve Antimicrobial Biodiscovery from Soils in Undergraduate/Citizen Science Research-Engaged Initiatives

doi: 10.3390/antibiotics13100956

Figure Lengend Snippet: Antimicrobial activity induction on TSA.

Article Snippet: Representative ESKAPE pathogen cultures were reconstituted on TSA from −80 °C freezer stocks maintained in the School of Microbiology UCC and included Enterococcus faecium NCIMB 11508, Staphylococcus aureus N670949, Klebsiella pneumoniae NCIMB 113218, Acinetobacter johnsonii DSM6963, Pseudomonas aeruginosa PA01, and Enterobacter aerogenes NCIMB 101P2.

Techniques: Activity Assay

Antimicrobial activity induction on SEA.

Journal: Antibiotics

Article Title: Optimization of Screening Media to Improve Antimicrobial Biodiscovery from Soils in Undergraduate/Citizen Science Research-Engaged Initiatives

doi: 10.3390/antibiotics13100956

Figure Lengend Snippet: Antimicrobial activity induction on SEA.

Article Snippet: Representative ESKAPE pathogen cultures were reconstituted on TSA from −80 °C freezer stocks maintained in the School of Microbiology UCC and included Enterococcus faecium NCIMB 11508, Staphylococcus aureus N670949, Klebsiella pneumoniae NCIMB 113218, Acinetobacter johnsonii DSM6963, Pseudomonas aeruginosa PA01, and Enterobacter aerogenes NCIMB 101P2.

Techniques: Activity Assay

Antimicrobial activity induction on SEA + GlcNAc.

Journal: Antibiotics

Article Title: Optimization of Screening Media to Improve Antimicrobial Biodiscovery from Soils in Undergraduate/Citizen Science Research-Engaged Initiatives

doi: 10.3390/antibiotics13100956

Figure Lengend Snippet: Antimicrobial activity induction on SEA + GlcNAc.

Article Snippet: Representative ESKAPE pathogen cultures were reconstituted on TSA from −80 °C freezer stocks maintained in the School of Microbiology UCC and included Enterococcus faecium NCIMB 11508, Staphylococcus aureus N670949, Klebsiella pneumoniae NCIMB 113218, Acinetobacter johnsonii DSM6963, Pseudomonas aeruginosa PA01, and Enterobacter aerogenes NCIMB 101P2.

Techniques: Activity Assay