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Draft Genome Sequence of a Strictly Anaerobic Dichloromethane-Degrading Bacterium. Genome Announcements, (4)2American Society for Microbiology, April 2016. [PUMA: imported] URL
Author Correction: Arsenic mobilization by anaerobic iron-dependent methane oxidation. Communications Earth & Environment, Dec 16, 2020. [PUMA: imported] URL
Microbial transformation of biogenic and abiogenic Fe minerals followed by in-situ incubations in an As-contaminated vs. non-contaminated aquifer. Environmental Pollution, (281):117012, Elsevier BV, July 2021. [PUMA: imported] URL
Diverse sulfate-reducing bacteria of the Desulfosarcina/Desulfococcus clade are the key alkane degraders at marine seeps. ISME Journal, (8)10:2029-2044, 2014. [PUMA: imported]
Starvation-Dependent Inhibition of the Hydrocarbon Degrader Marinobacter sp. TT1 by a Chemical Dispersant. Journal of Marine Science and Engineering, Nov 16, 2020. [PUMA: imported] URL
A biogeochemical–hydrological framework for the role of redox-active compounds in aquatic systems. Nature Geoscience, May 2021. [PUMA: imported] URL
Ability of chemical dispersants to reduce oil spill impacts remains unclear. Proceedings of the National Academy of Sciences of the United States of America, (113)11:E1422-E1423, 2016. [PUMA: imported]
Arsenic mobilization by anaerobic iron-dependent methane oxidation. Communications Earth & Environment, Nov 12, 2020. [PUMA: imported] URL
Predominant archaea in marine sediments degrade detrital proteins. Nature, (496)7444:215-218, 2013. [PUMA: imported]
Using dispersants after oil spills: Impacts on the composition and activity of microbial communities. Nature Reviews Microbiology, (13)6:388-396, 2015. [PUMA: imported]
N2O formation by nitrite-induced (chemo)denitrification in coastal marine sediment. Scientific Reports, Jul 31, 2019. [PUMA: imported] URL
Proteogenomics Reveals Novel Reductive Dehalogenases and Methyltransferases Expressed during Anaerobic Dichloromethane Metabolism. In Rebecca E. Parales (Eds.), Applied and Environmental Microbiology, (85)6American Society for Microbiology, March 2019. [PUMA: imported] URL
Responses of microbial communities to hydrocarbon exposures. Oceanography, (29)3:136-149, 2016. [PUMA: imported]
Insights into Nitrate-Reducing Fe(II) Oxidation Mechanisms through Analysis of Cell-Mineral Associations, Cell Encrustation, and Mineralogy in the Chemolithoautotrophic Enrichment Culture KS. In Joel E. Kostka (Eds.), Applied and Environmental Microbiology, July 2017. [PUMA: imported] URL
Colwellia and Marinobacter metapangenomes reveal species-specific responses to oil and dispersant exposure in deepsea microbial communities. Cold Spring Harbor Laboratory, September 2020. [PUMA: imported] URL
Mechanistic modeling indicates rapid glyphosate dissipation and sorption‐driven persistence of its metabolite AMPA in soil. Journal of Environmental Quality, March 2023. [PUMA: imported] URL
Draft Genome Sequence of Chlorobium sp. Strain N1, a Marine Fe(II)-Oxidizing Green Sulfur Bacterium. In Irene L. G. Newton (Eds.), Microbiology Resource Announcements, May 2, 2019. [PUMA: imported] URL
Identifying fermenting bacteria in anoxic tidal-flat sediments by a combination of microcalorimetry and ribosome-based stable-isotope probing. FEMS Microbiology Ecology, (81)1:78-87, 2012. [PUMA: imported]
Enhanced gene detection assays for fumarate-adding enzymes allow uncovering of anaerobic hydrocarbon degraders in terrestrial and marine systems. Applied and Environmental Microbiology, (79)2:543-552, 2013. [PUMA: imported]