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Explore complex patterns of bacterial recombination rates and their impact on phylogenies in this insightful presentation by Erik Van Nimwegen.
Explore proteome allocation constraints and adaptive strategies in competitive microbial communities, focusing on coexistence models.
Explore protein coevolution models, examining sampling techniques, physical principles, and evolutionary dynamics in molecular biology.
Explore determinants of selection responses in antibody libraries, focusing on key parameters and their impact on library evolution and optimization.
Explore SARS-CoV-2's early evolution, focusing on synonymous mutations and their role in evading the human innate immune system.
Explore new insights on multiple equilibria emergence in large, highly interactive ecosystems, focusing on theoretical advancements and practical implications.
Explore spatial population dynamics and their impact on evolutionary processes, focusing on genetic diversity and adaptation mechanisms.
Explore bacterial antibiotic resistance evolution through phenotypic delay modeling, uncovering insights into this critical health challenge.
Explore sequencing errors, phylogenetics, and SARS-CoV-2 transmission in hospitals with insights from a Cambridge researcher.
Explore bacterial evolution in complex environments, uncovering adaptive strategies and genetic mechanisms shaping microbial populations over time.
Explore phylogeny and function inference using diverse sequence spaces, led by Alessandra Carbone from CNRS and Sorbonne Université.
Explorez l'évolution de la virulence chez Escherichia coli, une bactérie commensale, et ses implications pour la santé humaine et la microbiologie.
Explore genetic diversity within species, examining key processes and mechanisms driving variation in populations.
Explore cutting-edge techniques for estimating large-scale species trees, addressing gene duplication and loss challenges in phylogenetics.
Explore bias-variance theory in protein genotype-to-phenotype mapping, focusing on global inference and local prediction techniques.
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