Jennifer Pett-Ridge
Affiliations: | 2005 | University of California, Berkeley, Berkeley, CA, United States |
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"Jennifer Pett-Ridge"Parents
Sign in to add mentorMary FIRESTONE | grad student | 2005 | UC Berkeley | |
(Rapidly fluctuating redox regimes frame the ecology of microbial communities and their biogeochemical function in a humid tropical soil.) |
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Publications
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Hallberg ZF, Nicolas AM, Alvarez-Aponte ZI, et al. (2024) Vitamin B variants structure soil microbial communities despite soil's vast reservoir of B. Biorxiv : the Preprint Server For Biology |
Kakouridis A, Yuan M, Nuccio EE, et al. (2024) Arbuscular mycorrhiza convey significant plant carbon to a diverse hyphosphere microbial food web and mineral-associated organic matter. The New Phytologist |
Marschmann GL, Tang J, Zhalnina K, et al. (2024) Predictions of rhizosphere microbiome dynamics with a genome-informed and trait-based energy budget model. Nature Microbiology. 9: 421-433 |
Pavlopoulos GA, Baltoumas FA, Liu S, et al. (2023) Unraveling the functional dark matter through global metagenomics. Nature. 622: 594-602 |
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 |
Sieradzki ET, Nuccio EE, Pett-Ridge J, et al. (2023) Rhizosphere and detritusphere habitats modulate expression of soil N-cycling genes during plant development. Msystems. 8: e0031523 |
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 |
Walkup J, Dang C, Mau RL, et al. (2023) The predictive power of phylogeny on growth rates in soil bacterial communities. Isme Communications. 3: 73 |
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 |