Coupled photochemical and enzymatic Mn(II) oxidation pathways of a planktonic Roseobacter-Like bacterium
about
Biological Low-pH Mn(II) Oxidation in a Manganese Deposit Influenced by Metal-Rich GroundwaterAurantimonas manganoxydans, sp. nov. and Aurantimonas litoralis, sp. nov.: Mn(II) oxidizing representatives of a globally distributed clade of alpha-Proteobacteria from the order RhizobialesMechanistic insights into manganese oxidation of a soil-borne Mn(II)-oxidizing Escherichia coli strain by global proteomic and genetic analyses.Culturable Rhodobacter and Shewanella species are abundant in estuarine turbidity maxima of the Columbia River.Analysis of in situ manganese(II) oxidation in the Columbia River and offshore plume: linking Aurantimonas and the associated microbial community to an active biogeochemical cycle.Promotion of Mn(II) oxidation and remediation of coal mine drainage in passive treatment systems by diverse fungal and bacterial communitiesIdentification of Mn(II)-oxidizing bacteria from a low-pH contaminated former uranium mineCorrelating carbon monoxide oxidation with cox genes in the abundant Marine Roseobacter CladeSuperoxide production by a manganese-oxidizing bacterium facilitates iodide oxidation.Profiling microbial communities in manganese remediation systems treating coal mine drainage.Mn(II) oxidation by an ascomycete fungus is linked to superoxide production during asexual reproduction.Identification of a Third Mn(II) Oxidase Enzyme in Pseudomonas putida GB-1.Constraints on superoxide mediated formation of manganese oxidesThe molecular biogeochemistry of manganese(II) oxidation.Genomic insights into Mn(II) oxidation by the marine alphaproteobacterium Aurantimonas sp. strain SI85-9A1.Distribution of microfossils within polymetallic nodules: biogenic clusters within manganese layers.Comparative proteomics of Mn(II)-oxidizing and non-oxidizing Roseobacter clade bacteria reveal an operative manganese transport system but minimal Mn(II)-induced expression of manganese oxidation and antioxidant enzymes.Biogenic manganese oxides as reservoirs of organic carbon and proteins in terrestrial and marine environments.Mn accumulation in a submerged plant Egeria densa (Hydrocharitaceae) is mediated by epiphytic bacteria.Photochemically assisted fast abiotic oxidation of manganese and formation of δ-MnO2 nanosheets in nitrate solution.Chromium(iii) oxidation by biogenic manganese oxides with varying structural ripening.Oxidative Formation and Removal of Complexed Mn(III) by Pseudomonas Species.
P2860
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P2860
Coupled photochemical and enzymatic Mn(II) oxidation pathways of a planktonic Roseobacter-Like bacterium
description
2006 nî lūn-bûn
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2006 թուականի Մայիսին հրատարակուած գիտական յօդուած
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2006 թվականի մայիսին հրատարակված գիտական հոդված
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2006年の論文
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2006年論文
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2006年論文
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2006年論文
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2006年論文
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2006年論文
@zh-tw
2006年论文
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name
Coupled photochemical and enzymatic Mn
@nl
Coupled photochemical and enzy ...... nic Roseobacter-Like bacterium
@ast
Coupled photochemical and enzy ...... nic Roseobacter-Like bacterium
@en
type
label
Coupled photochemical and enzymatic Mn
@nl
Coupled photochemical and enzy ...... nic Roseobacter-Like bacterium
@ast
Coupled photochemical and enzy ...... nic Roseobacter-Like bacterium
@en
prefLabel
Coupled photochemical and enzymatic Mn
@nl
Coupled photochemical and enzy ...... nic Roseobacter-Like bacterium
@ast
Coupled photochemical and enzy ...... nic Roseobacter-Like bacterium
@en
P2860
P1476
Coupled photochemical and enzy ...... nic Roseobacter-Like bacterium
@en
P2093
Chris A Francis
Colleen M Hansel
P2860
P304
P356
10.1128/AEM.72.5.3543-3549.2006
P407
P577
2006-05-01T00:00:00Z