about
Role of the lytic repressor in prophage induction of phage lambda as analyzed by a module-replacement approachCyanobacterial biofuel productionNon-fermentative pathways for synthesis of branched-chain higher alcohols as biofuelsDirect photosynthetic recycling of carbon dioxide to isobutyraldehydeDirected evolution of Methanococcus jannaschii citramalate synthase for biosynthesis of 1-propanol and 1-butanol by Escherichia coliEngineering the isobutanol biosynthetic pathway in Escherichia coli by comparison of three aldehyde reductase/alcohol dehydrogenase genes.Evolution, genomic analysis, and reconstruction of isobutanol tolerance in Escherichia coliA synthetic phage lambda regulatory circuit.Toward aldehyde and alkane production by removing aldehyde reductase activity in Escherichia coliExpanding ester biosynthesis in Escherichia coliEngineering Synechococcus elongatus PCC 7942 for continuous growth under diurnal conditionsRegulatory circuit design and evolution using phage lambda.Global metabolic rewiring for improved CO2 fixation and chemical production in cyanobacteria.Alternative biofuel production in non-natural hosts.Synthetic biology and metabolic engineering approaches to produce biofuels.Photosynthetic approaches to chemical biotechnology.Metabolic engineering for higher alcohol production.Putative intermediary stages for the molecular evolution from a ribozyme to a catalytic RNP.Synthetic biology guides biofuel production.Microbial production of scent and flavor compounds.A carbon sink pathway increases carbon productivity in cyanobacteria.Isobutanol production from cellobiose in Escherichia coli.Selections for constituting new RNA-protein interactions in catalytic RNP.Isobutyraldehyde production from Escherichia coli by removing aldehyde reductase activity.Engineered synthetic pathway for isopropanol production in Escherichia coli.An agar gel membrane-PDMS hybrid microfluidic device for long term single cell dynamic study.Engineering a synthetic pathway in cyanobacteria for isopropanol production directly from carbon dioxide and light.Biological production of 2-butanone in Escherichia coli.Combinatorial optimization of cyanobacterial 2,3-butanediol production.Metabolic engineering of Escherichia coli for 1-butanol production.Systematic Approaches to Efficiently Produce 2,3-Butanediol in a Marine Cyanobacterium.Non-photosynthetic biological CO reduction
P50
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P50
description
hulumtues
@sq
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Shota Atsumi
@ast
Shota Atsumi
@en
Shota Atsumi
@es
Shota Atsumi
@nl
Shota Atsumi
@sl
type
label
Shota Atsumi
@ast
Shota Atsumi
@en
Shota Atsumi
@es
Shota Atsumi
@nl
Shota Atsumi
@sl
prefLabel
Shota Atsumi
@ast
Shota Atsumi
@en
Shota Atsumi
@es
Shota Atsumi
@nl
Shota Atsumi
@sl
P106
P1153
7005680281
P21
P31
P496
0000-0002-5782-4196
P569
2000-01-01T00:00:00Z