Articles with "gluconobacter oxydans" as a keyword



Development of an Osmium Redox Polymer Mediated Bioanode and Examination of its Performance in Gluconobacter oxydans Based Microbial Fuel Cell

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Published in 2017 at "Electroanalysis"

DOI: 10.1002/elan.201600727

Abstract: Gluconobacter oxydans (G. oxydans) cells together with an osmium redox polymer (ORP) [Osmium (2,2'-bipyridine)2(poly-vinylimidazole)10Cl]Cl were combined with a glassy carbon paste electrode (GCPE) to form a bioanode for a microbial fuel cell (MFC) based on… read more here.

Keywords: fuel cell; oxydans gcpe; osmium redox; gluconobacter oxydans ... See more keywords

L-Erythrulose production with a multideletion strain of Gluconobacter oxydans

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Published in 2019 at "Applied Microbiology and Biotechnology"

DOI: 10.1007/s00253-019-09824-w

Abstract: Many ketoses or organic acids can be produced by membrane-associated oxidation with Gluconobacter oxydans. In this study, the oxidation of meso-erythritol to L-erythrulose was investigated with the strain G. oxydans 621HΔupp BP.8, a multideletion strain… read more here.

Keywords: multideletion strain; product; gluconobacter oxydans; yield ... See more keywords

Identification of transporter proteins for PQQ-secretion pathways by transcriptomics and proteomics analysis in Gluconobacter oxydans WSH-003

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Published in 2017 at "Frontiers of Chemical Science and Engineering"

DOI: 10.1007/s11705-016-1580-4

Abstract: Pyrroloquinoline quinone (PQQ) plays a significant role as a redox cofactor in combination with dehydrogenases in bacteria. These dehydrogenases play key roles in the oxidation of important substrates for the biotechnology industry, such as vitamin… read more here.

Keywords: wsh 003; pqq; gluconobacter oxydans; b932 ... See more keywords

Repeated biotransformation of glycerol to 1,3-dihydroxyacetone by immobilized cells of Gluconobacter oxydans with glycerol- and urea-feeding strategy in a bubble column bioreactor.

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Published in 2017 at "Bioresource technology"

DOI: 10.1016/j.biortech.2017.02.096

Abstract: Some inorganic nitrogen sources and amino acids instead of yeast extract, which resulted in trouble of product purification, were introduced for 1,3-dihydroxyacetone (DHA) production by biotransformation with Gluconobacter oxydans. The results showed that urea is… read more here.

Keywords: glycerol urea; gluconobacter oxydans; bioreactor; biotransformation ... See more keywords

Complete oxidative conversion of lignocellulose derived non-glucose sugars to sugar acids by Gluconobacter oxydans.

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Published in 2017 at "Bioresource technology"

DOI: 10.1016/j.biortech.2017.08.078

Abstract: Non-glucose sugars derived from lignocellulose cover approximately 40% of the total carbohydrates of lignocellulose biomass. The conversion of the non-glucose sugars to the target products is an important task of lignocellulose biorefining research. Here we… read more here.

Keywords: sugar acids; non glucose; gluconobacter oxydans; conversion ... See more keywords

Process for the successive production of calcium galactonate crystals by Gluconobacter oxydans.

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Published in 2018 at "Bioresource technology"

DOI: 10.1016/j.biortech.2018.04.043

Abstract: Galactonic acid and its salts can be potentially used in foodstuffs and as specialty chemicals. So far, the researches on microbial conversion of galactose to galactonate are still scarce. In this study, we initially used… read more here.

Keywords: calcium galactonate; fermentation; gluconobacter oxydans; galactonate ... See more keywords
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A novel strain of acetic acid bacteria Gluconobacter oxydans FBFS97 involved in riboflavin production

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Published in 2020 at "Scientific Reports"

DOI: 10.1038/s41598-020-70404-4

Abstract: A novel bacterial strain of acetic acid bacteria capable of producing riboflavin was isolated from the soil sample collected in Wuhan, China. The isolated strain was identified as Gluconobacter oxydans FBFS97 based on several phenotype… read more here.

Keywords: oxydans fbfs97; production; gluconobacter oxydans; riboflavin production ... See more keywords

Direct genome-scale screening of Gluconobacter oxydans B58 for rare earth element bioleaching

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Published in 2024 at "Communications Biology"

DOI: 10.1038/s42003-025-08061-4

Abstract: The transition to a sustainable energy economy will require an enormous increase in the supply of rare earth elements (REE). Bioleaching offers a promising alternative to conventional hydrometallurgical methods for REE extraction from low-grade ores.… read more here.

Keywords: scale; rare earth; oxydans b58; gluconobacter oxydans ... See more keywords

Valorization of Waste Glycerol to Dihydroxyacetone with Biocatalysts Obtained from Gluconobacter oxydans

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Published in 2018 at "Applied Sciences"

DOI: 10.3390/app8122517

Abstract: Waste glycerol is the main by-product generated during biodiesel production, in an amount reaching up to 10% of the produced biofuel. Is there any method which allows changing this waste into industrial valuable compounds? This… read more here.

Keywords: waste; gluconobacter oxydans; glycerol; obtained gluconobacter ... See more keywords

Polymer-Based Conductive Nanocomposites for the Development of Bioanodes Using Membrane-Bound Enzyme Systems of Bacteria Gluconobacter oxydans in Biofuel Cells

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Published in 2023 at "Polymers"

DOI: 10.3390/polym15051296

Abstract: The development of biofuel cells (BFCs) currently has high potential since these devices can be used as alternative energy sources. This work studies promising materials for biomaterial immobilization in bioelectrochemical devices based on a comparative… read more here.

Keywords: enzyme systems; development; gluconobacter oxydans; bound enzyme ... See more keywords

Characterization of Two Dehydrogenases from Gluconobacter oxydans Involved in the Transformation of Patulin to Ascladiol

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Published in 2022 at "Toxins"

DOI: 10.3390/toxins14070423

Abstract: Patulin is a mycotoxin that primarily contaminate apples and apple products. Whole cell or cell-free extracts of Gluconobacter oxydans ATCC 621 were able to transform patulin to E-ascladiol. Proteins from cell-free extracts were separated by… read more here.

Keywords: patulin ascladiol; gluconobacter oxydans; two dehydrogenases; patulin ... See more keywords