Genome-driven evolutionary game theory helps understand the rise of metabolic interdependencies in microbial communities

Por um escritor misterioso

Descrição

Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
Selfishness driving reductive evolution shapes interdependent
Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
Genome-driven evolutionary game theory helps understand the rise
Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
Designing Metabolic Division of Labor in Microbial Communities
Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
Metabolic modelling approaches for describing and engineering
Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
Characterizing the correlation between species/strain-specific
Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
Metabolites, Free Full-Text
Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
Advances in constraint-based modelling of microbial communities
Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
COMMIT: Consideration of metabolite leakage and community
Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
Frontiers Metabolic Games
Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
Microbial Community Decision Making Models in Batch and Chemostat
Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
Selfishness driving reductive evolution shapes interdependent
Genome-driven evolutionary game theory helps understand the rise of  metabolic interdependencies in microbial communities
Life, Free Full-Text
de por adulto (o preço varia de acordo com o tamanho do grupo)