Mario E. Muscarella
Affiliations: | University of Alaska Fairbanks, Fairbanks, AK, United States |
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"Mario Muscarella"Parents
Sign in to add mentorJay T. Lennon | grad student | Indiana University Bloomington | |
Paul A. del Giorgio | post-doc | Université du Québec à Montréal (Chemistry Tree) | |
James P. O'Dwyer | post-doc | UIUC (Theoretical Ecology Tree) |
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Publications
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Buchanan CE, Galla SJ, Muscarella ME, et al. (2024) Relating gut microbiome composition and life history metrics for pronghorn (Antilocapra americana) in the Red Desert, Wyoming. Plos One. 19: e0306722 |
Rocca JD, Muscarella ME, Peralta AL, et al. (2021) Guided by Microbes: Applying Community Coalescence Principles for Predictive Microbiome Engineering. Msystems. 6: e0053821 |
Shoemaker WR, Jones SE, Muscarella ME, et al. (2021) Microbial population dynamics and evolutionary outcomes under extreme energy limitation. Proceedings of the National Academy of Sciences of the United States of America. 118 |
Peralta AL, Bledsoe RB, Muscarella ME, et al. (2020) Metagenomes from Experimental Hydrologic Manipulation of Restored Coastal Plain Wetland Soils (Tyrell County, North Carolina). Microbiology Resource Announcements. 9 |
Johnson WM, Alexander H, Bier RL, et al. (2020) Auxotrophic interactions: A stabilizing attribute of aquatic microbial communities? Fems Microbiology Ecology |
Muscarella ME, Howey XM, Lennon JT. (2020) Trait-based approach to bacterial growth efficiency. Environmental Microbiology |
Locey KJ, Muscarella ME, Larsen ML, et al. (2020) Dormancy dampens the microbial distance-decay relationship. Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences. 375: 20190243 |
Wisnoski NI, Muscarella ME, Larsen ML, et al. (2020) Metabolic insight into bacterial community assembly across ecosystem boundaries. Ecology. e02968 |
Muscarella ME, Boot CM, Broeckling CD, et al. (2019) Resource heterogeneity structures aquatic bacterial communities. The Isme Journal |
Aanderud ZT, Saurey S, Ball BA, et al. (2019) Corrigendum: Stoichiometric Shifts in Soil C:N:P Promote Bacterial Taxa Dominance, Maintain Biodiversity, and Deconstruct Community Assemblages. Frontiers in Microbiology. 10: 391 |