Michael N. Weintraub, Ph.D.
Affiliations: | 2004 | University of California, Santa Barbara, Santa Barbara, CA, United States |
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"Michael Weintraub"Parents
Sign in to add mentorJosh Schimel | grad student | 2004 | UC Santa Barbara | |
(Nutrient dynamics in the arctic tundra of Alaska.) |
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Publications
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Susser JR, Pelini SL, Weintraub MN. (2020) Can we reduce phosphorus runoff from agricultural fields by stimulating soil biota? Journal of Environmental Quality. 49: 933-944 |
Sullivan PF, Stokes MC, McMillan CK, et al. (2020) Labile carbon limits late winter microbial activity near Arctic treeline. Nature Communications. 11: 4024 |
Maran AM, Weintraub MN, Pelini SL. (2020) Does stimulating ground arthropods enhance nutrient cycling in conventionally managed corn fields? Agriculture, Ecosystems & Environment. 297: 106934 |
Darrouzet-Nardi A, Steltzer H, Sullivan PF, et al. (2019) Limited effects of early snowmelt on plants, decomposers, and soil nutrients in Arctic tundra soils. Ecology and Evolution. 9: 1820-1844 |
Livensperger C, Steltzer H, Darrouzet‐Nardi A, et al. (2019) Experimentally warmer and drier conditions in an Arctic plant community reveal microclimatic controls on senescence Ecosphere. 10: e02677 |
Dick RP, Dick LK, Deng S, et al. (2018) Cross-laboratory comparison of fluorimetric microplate and colorimetric bench-scale soil enzyme assays Soil Biology and Biochemistry. 121: 240-248 |
Deng S, Dick RP, Freeman C, et al. (2016) Comparison and Standardization of Soil Enzyme Assay for Meaningful Data Interpretation. Journal of Microbiological Methods |
Livensperger C, Steltzer H, Darrouzet-Nardi A, et al. (2016) Earlier snowmelt and warming lead to earlier but not necessarily more plant growth. Aob Plants |
Moorhead DL, Sinsabaugh RL, Hill BH, et al. (2016) Vector analysis of ecoenzyme activities reveal constraints on coupled C, N and P dynamics Soil Biology and Biochemistry. 93: 1-7 |
Rinkes ZL, Bertrand I, Amin BAZ, et al. (2016) Nitrogen alters microbial enzyme dynamics but not lignin chemistry during maize decomposition Biogeochemistry. 128: 171-186 |