Results 11 to 20 of about 856 (131)

Novel Mode of Molybdate Inhibition of Desulfovibrio vulgaris Hildenborough [PDF]

open access: yesFrontiers in Microbiology, 2020
Sulfate-reducing microorganisms (SRM) are found in multiple environments and play a major role in global carbon and sulfur cycling. Because of their growth capabilities and association with metal corrosion, controlling the growth of SRM has become of ...
Kara De Leon, Grant Zane, Judy Wall
exaly   +7 more sources

Exploring the role of CheA3 in Desulfovibrio vulgaris Hildenborough motility [PDF]

open access: yesFrontiers in Microbiology, 2014
Sulfate-reducing bacteria such as Desulfovibrio vulgaris Hildenborough are often found in environments with limiting growth nutrients. Using lactate as the electron donor and carbon source, and sulfate as the electron acceptor, wild type D.
Lara Rajeev, Grant Zane, Manfred Auer
exaly   +7 more sources

IHF is required for the transcriptional regulation of the Desulfovibrio vulgaris Hildenborough orp operons. [PDF]

open access: yesPLoS ONE, 2014
Transcriptional activation of σ(54)-dependent promoters is usually tightly regulated in response to environmental cues. The high abundance of potential σ(54)-dependent promoters in the anaerobe bacteria, Desulfovibrio vulgaris Hildenborough, reflects the
Anouchka Fiévet   +4 more
doaj   +6 more sources

Combining metabolic flux analysis with proteomics to shed light on the metabolic flexibility: the case of Desulfovibrio vulgaris Hildenborough [PDF]

open access: yesFrontiers in Microbiology
IntroductionDesulfovibrio vulgaris Hildenborough is a gram-negative anaerobic bacterium belonging to the sulfate-reducing bacteria that exhibits highly versatile metabolism. By switching from one energy mode to another depending on nutrients availability
Marie-Therese Giudici-Orticoni   +2 more
exaly   +4 more sources

Large-scale genetic characterization of the model sulfate-reducing bacterium, Desulfovibrio vulgaris Hildenborough [PDF]

open access: yesFrontiers in Microbiology, 2023
Sulfate-reducing bacteria (SRB) are obligate anaerobes that can couple their growth to the reduction of sulfate. Despite the importance of SRB to global nutrient cycles and their damage to the petroleum industry, our molecular understanding of their ...
Valentine V. Trotter   +17 more
doaj   +2 more sources

Unintended Laboratory-Driven Evolution Reveals Genetic Requirements for Biofilm Formation by Desulfovibrio vulgaris Hildenborough [PDF]

open access: yesmBio, 2017
Biofilms of sulfate-reducing bacteria (SRB) are of particular interest as members of this group are culprits in corrosion of industrial metal and concrete pipelines as well as being key players in subsurface metal cycling.
Kara B. De León   +8 more
doaj   +2 more sources

Single-cell analysis of growth and cell division of the anaerobe Desulfovibrio vulgaris Hildenborough [PDF]

open access: yesFrontiers in Microbiology, 2015
Recent years have seen significant progress in understanding basic bacterial cell cycle properties such as cell growth and cell division. While characterization and regulation of bacterial cell cycle is quite well documented in the case of fast growing ...
Anouchka eFievet   +8 more
doaj   +2 more sources

Absence of biofilm adhesin proteins changes surface attachment and cell strategy for Desulfovibrio vulgaris Hildenborough [PDF]

open access: yesJournal of Bacteriology
Ubiquitous in nature, biofilms provide stability in a fluctuating environment and provide protection from stressors. Biofilms formed in industrial processes are exceedingly problematic and costly.
C. Pete Pickens   +3 more
doaj   +2 more sources

Linking NrfD/PsrC-like architecture to energy conservation: Functional residues in the quinone reactive QrcABCD complex of sulfate-reducing bacteria. [PDF]

open access: yesProtein Sci
Abstract The QrcABCD quinone reductase complex is an electrogenic complex present in sulfate‐reducing bacteria of the Desulfobacterota phylum. It operates as a cytochrome c3:menaquinone oxidoreductase involved in electron transfer from periplasmic hydrogen or formate oxidation to the menaquinone (MK) pool.
Manteigas G   +4 more
europepmc   +2 more sources

Growth of the obligate anaerobe Desulfovibrio vulgaris Hildenborough under continuous low oxygen concentration sparging: impact of the membrane-bound oxygen reductases. [PDF]

open access: yesPLoS ONE, 2015
Although obligate anaerobe, the sulfate-reducing bacterium Desulfovibrio vulgaris Hildenborough (DvH) exhibits high aerotolerance that involves several enzymatic systems, including two membrane-bound oxygen reductases, a bd-quinol oxidase and a cc(b/o)o3
Fanny Ramel   +6 more
doaj   +2 more sources

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