Self-organization, layered structure, and aggregation enhance persistence of a synthetic biofilm consortium.
about
Utilization and control of ecological interactions in polymicrobial infections and community-based microbial cell factoriesIntra- and inter-species interactions within biofilms of important foodborne bacterial pathogensMetabolic and demographic feedbacks shape the emergent spatial structure and function of microbial communitiesThe synthetic biology futureThe PLOS ONE synthetic biology collection: six years and countingInterplay of physical mechanisms and biofilm processes: review of microfluidic methodsSynthesis and patterning of tunable multiscale materials with engineered cells.Synthetic Escherichia coli consortia engineered for syntrophy demonstrate enhanced biomass productivity.A programmable Escherichia coli consortium via tunable symbiosisEngineering ecosystems and synthetic ecologies.Strong inter-population cooperation leads to partner intermixing in microbial communities.Biofilm growth mode promotes maximum carrying capacity and community stability during product inhibition syntrophySynthetic microbial ecosystems: an exciting tool to understand and apply microbial communities.Bacterial swarms recruit cargo bacteria to pave the way in toxic environments.Exploring Host-Microbiome Interactions using an in Silico Model of Biomimetic Robots and Engineered Living Cells.Synthetic quorum-sensing circuit to control consortial biofilm formation and dispersal in a microfluidic device.Synthetic biology: advancing biological frontiers by building synthetic systemsEngineering microbial systems to explore ecological and evolutionary dynamics.Quorum Sensing Communication Modules for Microbial ConsortiaMicrobial synthetic biology for human therapeutics.Engineering microbial consortia for controllable outputsCell morphology drives spatial patterning in microbial communitiesMicrobial Consortia Engineering for Cellular Factories: in vitro to in silico systems.Collective antibiotic resistance: mechanisms and implications.Unexploited potential of some biotechnological techniques for biofertilizer production and formulation.Synthetic biology: from mainstream to counterculture.A Two-Dimensional Multiphase Model of Biofilm Formation in Microfluidic Chambers.
P2860
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P2860
Self-organization, layered structure, and aggregation enhance persistence of a synthetic biofilm consortium.
description
2011 nî lūn-bûn
@nan
2011 թուականի Փետրուարին հրատարակուած գիտական յօդուած
@hyw
2011 թվականի փետրվարին հրատարակված գիտական հոդված
@hy
2011年の論文
@ja
2011年論文
@yue
2011年論文
@zh-hant
2011年論文
@zh-hk
2011年論文
@zh-mo
2011年論文
@zh-tw
2011年论文
@wuu
name
Self-organization, layered str ...... synthetic biofilm consortium.
@ast
Self-organization, layered str ...... synthetic biofilm consortium.
@en
type
label
Self-organization, layered str ...... synthetic biofilm consortium.
@ast
Self-organization, layered str ...... synthetic biofilm consortium.
@en
prefLabel
Self-organization, layered str ...... synthetic biofilm consortium.
@ast
Self-organization, layered str ...... synthetic biofilm consortium.
@en
P2860
P1433
P1476
Self-organization, layered str ...... synthetic biofilm consortium.
@en
P2093
Katie Brenner
P2860
P304
P356
10.1371/JOURNAL.PONE.0016791
P407
P577
2011-02-09T00:00:00Z