Steven Joseph Blazewicz
Affiliations: | 2012 | Environmental Science, Policy, | University of California, Berkeley, Berkeley, CA, United States |
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"Steven Blazewicz"Parents
Sign in to add mentorMary K. Firestone | grad student | 2012 | UC Berkeley | |
(Microbial Activity, Growth, and Mortality in Environmental Assemblages: Population and Community Response to Rewetting of a Dry Mediterranean Soil and Anaerobic Methane Cycling in Tropical and Boreal Soils.) |
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Publications
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Foley MM, Stone BWG, Caro TA, et al. (2024) Growth rate as a link between microbial diversity and soil biogeochemistry. Nature Ecology & Evolution |
Chuckran PF, Estera-Molina K, Huntemann M, et al. (2024) Metatranscriptomes of California grassland soil microbial communities in response to rewetting. Microbiology Resource Announcements. e0032224 |
Piñeiro J, Dang C, Walkup JGV, et al. (2023) Shifts in bacterial traits under chronic nitrogen deposition align with soil processes in arbuscular, but not ectomycorrhizal-associated trees. Global Change Biology. e17030 |
Santos-Medellín C, Blazewicz SJ, Pett-Ridge J, et al. (2023) Viral but not bacterial community successional patterns reflect extreme turnover shortly after rewetting dry soils. Nature Ecology & Evolution. 7: 1809-1822 |
Nicolas AM, Sieradzki ET, Pett-Ridge J, et al. (2023) A subset of viruses thrives following microbial resuscitation during rewetting of a seasonally dry California grassland soil. Nature Communications. 14: 5835 |
Vyshenska D, Sampara P, Singh K, et al. (2023) A standardized quantitative analysis strategy for stable isotope probing metagenomics. Msystems. e0128022 |
Maillard F, Michaud TJ, See CR, et al. (2023) Melanization slows the rapid movement of fungal necromass carbon and nitrogen into both bacterial and fungal decomposer communities and soils. Msystems. e0039023 |
Stone BW, Blazewicz SJ, Koch BJ, et al. (2023) Nutrients strengthen density dependence of per-capita growth and mortality rates in the soil bacterial community. Oecologia |
Nuccio EE, Blazewicz SJ, Lafler M, et al. (2022) HT-SIP: a semi-automated stable isotope probing pipeline identifies cross-kingdom interactions in the hyphosphere of arbuscular mycorrhizal fungi. Microbiome. 10: 199 |
Greenlon A, Sieradzki E, Zablocki O, et al. (2022) Quantitative Stable-Isotope Probing (qSIP) with Metagenomics Links Microbial Physiology and Activity to Soil Moisture in Mediterranean-Climate Grassland Ecosystems. Msystems. e0041722 |