Gregory Velicer
Affiliations: | ETH/Uni Zurich, Zürich, Zürich, Switzerland |
Area:
Microbial evolution, microbial ecologyGoogle:
"Gregory Velicer"Children
Sign in to add traineeSusanne A. Kraemer | grad student | 2011 | Indiana University Bloomington |
J. David Van Dyken | grad student | 2011 | Indiana University Bloomington |
Helena H. Mendes-Soares | grad student | 2012 | Indiana University Bloomington |
Peter C. Zee | grad student | 2012 | Indiana University Bloomington |
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Publications
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Wielgoss S, Van Dyken JD, Velicer GJ. (2024) Mutation rate and effective population size of the model cooperative bacterium Myxococcus xanthus. Genome Biology and Evolution |
Vasse M, Fiegna F, Kriesel B, et al. (2024) Killer prey: Ecology reverses bacterial predation. Plos Biology. 22: e3002454 |
Schaal KA, Manhes P, Velicer GJ. (2023) Ecological histories determine the success of social exploitation. Biorxiv : the Preprint Server For Biology |
Fiegna F, Pande S, Peitz H, et al. (2023) Widespread density dependence of bacterial growth under acid stress. Iscience. 26: 106952 |
Cossey SM, Velicer GJ, Yu YN. (2023) Ribonuclease D Processes a Small RNA Regulator of Multicellular Development in Myxobacteria. Genes. 14 |
Schaal KA, Yu YN, Vasse M, et al. (2022) Allopatric divergence of cooperators confers cheating resistance and limits effects of a defector mutation. Bmc Ecology and Evolution. 22: 141 |
La Fortezza M, Rendueles O, Keller H, et al. (2022) Author Correction: Hidden paths to endless forms most wonderful: ecology latently shapes evolution of multicellular development in predatory bacteria. Communications Biology. 5: 1342 |
La Fortezza M, Rendueles O, Keller H, et al. (2022) Hidden paths to endless forms most wonderful: ecology latently shapes evolution of multicellular development in predatory bacteria. Communications Biology. 5: 977 |
Eisner SA, Velicer GJ, Yu YN. (2022) Mutation of Shifts the Nutrient Threshold Triggering Multicellular Development. Frontiers in Microbiology. 13: 817080 |
La Fortezza M, Velicer GJ. (2021) Social selection within aggregative multicellular development drives morphological evolution. Proceedings. Biological Sciences. 288: 20211522 |