Below are the most recent publications written about "Sulfates" by people in Profiles.
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Chen M, Zhang YQ, Krumholz LR, Zhao LY, Yan ZS, Yang YJ, Li ZH, Hayat F, Chen HB, Huang R. Black blooms-induced adaptive responses of sulfate reduction bacteria in a shallow freshwater lake. Environ Res. 2022 06; 209:112732.
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Ali IA, Roton D, Madhoun M. Oral sulfate solution versus low-volume polyethylene glycol for bowel preparation: Meta-analysis of randomized controlled trials. Dig Endosc. 2022 May; 34(4):721-728.
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Wu B, Liu F, Zhou A, Li J, Shu L, Kempher ML, Yang X, Ning D, Pan F, Zane GM, Wall JD, Van Nostrand JD, Juneau P, Chen S, Yan Q, Zhou J, He Z. Experimental evolution reveals nitrate tolerance mechanisms in Desulfovibrio vulgaris. ISME J. 2020 11; 14(11):2862-2876.
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Kempher ML, Tao X, Song R, Wu B, Stahl DA, Wall JD, Arkin AP, Zhou A, Zhou J. Effects of Genetic and Physiological Divergence on the Evolution of a Sulfate-Reducing Bacterium under Conditions of Elevated Temperature. mBio. 2020 08 18; 11(4).
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Chen M, Jiao YY, Zhang YQ, Krumholz LR, Ren JX, Li ZH, Zhao LY, Song HT, Lu JD. Succession of sulfur bacteria during decomposition of cyanobacterial bloom biomass in the shallow Lake Nanhu: An ex situ mesocosm study. Chemosphere. 2020 Oct; 256:127101.
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Liang R, Davidova I, Hirano SI, Duncan KE, Suflita JM. Community succession in an anaerobic long-chain paraffin-degrading consortium and impact on chemical and electrical microbially influenced iron corrosion. FEMS Microbiol Ecol. 2019 08 01; 95(8).
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Eid MM, Duncan KE, Tanner RS. A semi-continuous system for monitoring microbially influenced corrosion. J Microbiol Methods. 2018 07; 150:55-60.
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Liang R, Aydin E, Le Borgne S, Sunner J, Duncan KE, Suflita JM. Anaerobic biodegradation of biofuels and their impact on the corrosion of a Cu-Ni alloy in marine environments. Chemosphere. 2018 Mar; 195:427-436.
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Zhou A, Lau R, Baran R, Ma J, von Netzer F, Shi W, Gorman-Lewis D, Kempher ML, He Z, Qin Y, Shi Z, Zane GM, Wu L, Bowen BP, Northen TR, Hillesland KL, Stahl DA, Wall JD, Arkin AP, Zhou J. Key Metabolites and Mechanistic Changes for Salt Tolerance in an Experimentally Evolved Sulfate-Reducing Bacterium, Desulfovibrio vulgaris. mBio. 2017 11 14; 8(6).
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Coutinho CMLM, Coutinho-Silva R, Zinkevich V, Pearce CB, Ojcius DM, Beech I. Sulphate-reducing bacteria from ulcerative colitis patients induce apoptosis of gastrointestinal epithelial cells. Microb Pathog. 2017 Nov; 112:126-134.