A synthetic growth switch based on controlled expression of RNA polymerase.
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Programming mRNA decay to modulate synthetic circuit resource allocationEngineering glucose metabolism of Escherichia coli under nitrogen starvation.Dynamical Allocation of Cellular Resources as an Optimal Control Problem: Novel Insights into Microbial Growth Strategies.Automated optogenetic feedback control for precise and robust regulation of gene expression and cell growth.Computational design of small transcription activating RNAs for versatile and dynamic gene regulation.On the intrinsic constraint of bacterial growth rate: M. tuberculosis's view of the protein translation capacity.Rational engineering of synthetic microbial systems: from single cells to consortia.Heterosis Is a Systemic Property Emerging From Non-linear Genotype-Phenotype Relationships: Evidence From in Vitro Genetics and Computer Simulations.Inactivation of group 2 σ factors upregulates production of transcription and translation machineries in the cyanobacterium Synechocystis sp. PCC 6803.
P2860
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P2860
A synthetic growth switch based on controlled expression of RNA polymerase.
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
@zh-tw
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
A synthetic growth switch based on controlled expression of RNA polymerase.
@en
A synthetic growth switch based on controlled expression of RNA polymerase.
@nl
type
label
A synthetic growth switch based on controlled expression of RNA polymerase.
@en
A synthetic growth switch based on controlled expression of RNA polymerase.
@nl
prefLabel
A synthetic growth switch based on controlled expression of RNA polymerase.
@en
A synthetic growth switch based on controlled expression of RNA polymerase.
@nl
P2093
P2860
P356
P1476
A synthetic growth switch based on controlled expression of RNA polymerase.
@en
P2093
Cindy D C Gomez Balderas
Delphine Ropers
Hidde de Jong
Jérôme Izard
Stephan Lacour
Xiaohu Song
Yifan Yang
P2860
P356
10.15252/MSB.20156382
P577
2015-11-23T00:00:00Z