Self-establishing communities enable cooperative metabolite exchange in a eukaryote
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How mutualisms arise in phytoplankton communities: building eco-evolutionary principles for aquatic microbesSaccharomyces cerevisiae single-copy plasmids for auxotrophy compensation, multiple marker selection, and for designing metabolically cooperating communities.Saccharomyces cerevisiae metabolism in ecological contextConstraint-based stoichiometric modelling from single organisms to microbial communities.Cell-to-cell heterogeneity emerges as consequence of metabolic cooperation in a synthetic yeast community.The metabolic background is a global player in Saccharomyces gene expression epistasis.Natural Variation in SER1 and ENA6 Underlie Condition-Specific Growth Defects in Saccharomyces cerevisiae.Genome-driven evolutionary game theory helps understand the rise of metabolic interdependencies in microbial communities.Yeast Creates a Niche for Symbiotic Lactic Acid Bacteria through Nitrogen Overflow.Impact of spatial organization on a novel auxotrophic interaction among soil microbes.
P2860
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P2860
Self-establishing communities enable cooperative metabolite exchange in a eukaryote
description
2015 nî lūn-bûn
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2015年の論文
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2015年論文
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2015年論文
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2015年論文
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2015年論文
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2015年論文
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2015年论文
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2015年论文
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2015年论文
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name
Self-establishing communities enable cooperative metabolite exchange in a eukaryote
@en
type
label
Self-establishing communities enable cooperative metabolite exchange in a eukaryote
@en
prefLabel
Self-establishing communities enable cooperative metabolite exchange in a eukaryote
@en
P2093
P2860
P50
P356
P1433
P1476
Self-establishing communities enable cooperative metabolite exchange in a eukaryote
@en
P2093
Enrica Calvani
Jakob Vowinckel
Mohammad T Alam
Silke Malmsheimer
Stefan Christen
P2860
P356
10.7554/ELIFE.09943
P407
P577
2015-10-26T00:00:00Z