James P. Shapleigh
Affiliations: | Cornell University, Ithaca, NY, United States |
Area:
Molecular Biology, Microbiology BiologyGoogle:
"James Shapleigh"Children
Sign in to add traineeWilliam P. Laratta | grad student | 2002 | Cornell |
Peter S. Choi | grad student | 2004 | Cornell |
Angela K. Hartsock | grad student | 2009 | Cornell |
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Publications
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McGuire PM, Butkevich N, Saksena AV, et al. (2023) Oxic-anoxic cycling promotes coupling between complex carbon metabolism and denitrification in woodchip bioreactors. Environmental Microbiology |
Zhuge YY, Shen XY, Liu YD, et al. (2020) Application of acidic conditions and inert-gas sparging to achieve high-efficiency nitrous oxide recovery during nitrite denitrification. Water Research. 182: 116001 |
Li W, Zhuang JL, Zhou YY, et al. (2019) Metagenomics reveals microbial community differences lead to differential nitrate production in anammox reactors with differing nitrogen loading rates. Water Research. 169: 115279 |
Shi LD, Wang M, Han YL, et al. (2019) Multi-omics reveal various potential antimonate reductases from phylogenetically diverse microorganisms. Applied Microbiology and Biotechnology |
Nadeau SA, Roco CA, Debenport SJ, et al. (2019) Metagenomic analysis reveals distinct patterns of denitrification gene abundance across soil moisture, nitrate gradients. Environmental Microbiology |
Roco CA, Dörsch P, Booth JG, et al. (2019) Using metagenomics to reveal landscape scale patterns of denitrifiers in a montane forest ecosystem Soil Biology and Biochemistry. 138: 107585 |
Shi LD, Chen YS, Du JJ, et al. (2018) Metagenomic Evidence for a Species Capable of Bioremediation of Diverse Heavy Metals. Frontiers in Microbiology. 9: 3297 |
Li W, Li H, Liu YD, et al. (2018) Salinity-aided selection of progressive onset denitrifiers as a means of providing nitrite for anammox. Environmental Science & Technology |
Roco CA, Bergaust LL, Bakken LR, et al. (2016) Modularity of nitrogen-oxide reducing soil bacteria: Linking phenotype to genotype. Environmental Microbiology |
Roco CA, Bergaust LL, Shapleigh JP, et al. (2016) Reduction of nitrate to nitrite by microbes under oxic conditions Soil Biology and Biochemistry. 100: 1-8 |