scholarly article | Q13442814 |
review article | Q7318358 |
P2093 | author name string | Kolter R | |
Zambrano MM | |||
P2860 | cites work | Adaptive mutation: the uses of adversity | Q24596056 |
Quorum sensing in bacteria: the LuxR-LuxI family of cell density-responsive transcriptional regulators | Q28378462 | ||
Microbial Competition: Escherichia coli Mutants That Take Over Stationary Phase Cultures | Q34305902 | ||
The response regulator SprE controls the stability of RpoS. | Q37695886 | ||
UDP-glucose is a potential intracellular signal molecule in the control of expression of sigma S and sigma S-dependent genes in Escherichia coli | Q38300422 | ||
Regulation of Escherichia coli starvation sigma factor (sigma s) by ClpXP protease | Q39839940 | ||
The role of the sigma factor sigma S (KatF) in bacterial global regulation | Q40572983 | ||
In pursuit of a molecular mechanism for adaptive mutation. | Q40575363 | ||
The response regulator RssB controls stability of the sigma(S) subunit of RNA polymerase in Escherichia coli. | Q41064227 | ||
Sensing starvation: a homoserine lactone--dependent signaling pathway in Escherichia coli | Q48080855 | ||
Enzymatic synthesis of a quorum-sensing autoinducer through use of defined substrates. | Q54586999 | ||
P433 | issue | 2 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 181-184 | |
P577 | publication date | 1996-07-01 | |
P1433 | published in | Cell | Q655814 |
P1476 | title | GASPing for life in stationary phase | |
P478 | volume | 86 |
Q48079732 | A GacS deficiency does not affect Pseudomonas chlororaphis PA23 fitness when growing on canola, in aged batch culture or as a biofilm |
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Q77910540 | Bacterial gene products in response to near-ultraviolet radiation |
Q40529787 | Bacteriophage T4 Infection of Stationary Phase E. coli: Life after Log from a Phage Perspective |
Q38415337 | Characterization of the E. coli proteome and its modifications during growth and ethanol stress |
Q39494708 | Characterization of the ssnA gene, which is involved in the decline of cell viability at the beginning of stationary phase in Escherichia coli. |
Q37957577 | Chronological aging in Saccharomyces cerevisiae |
Q24554266 | Comparative genomics of Salmonella enterica serovar Typhi strains Ty2 and CT18 |
Q51664301 | Competition favours reduced cost of plasmids to host bacteria. |
Q38446575 | Competitive growth advantage of nontoxigenic mutants in the stationary phase in archival cultures of pathogenic Vibrio cholerae strains |
Q33987302 | Controlling instability in gacS-gacA regulatory genes during inoculant production of Pseudomonas fluorescens biocontrol strains |
Q34433403 | Crl Binds to Domain 2 of σ S and Confers a Competitive Advantage on a Natural rpoS Mutant of Salmonella enterica Serovar Typhi |
Q26825267 | Culture history and population heterogeneity as determinants of bacterial adaptation: the adaptomics of a single environmental transition |
Q34055951 | DNA looping-mediated repression by histone-like protein H-NS: specific requirement of Esigma70 as a cofactor for looping |
Q34725734 | Decay of unused characters by selection and drift |
Q42323318 | Density-Dependent Recycling Promotes the Long-Term Survival of Bacterial Populations during Periods of Starvation |
Q73840629 | Disappearance of growth advantage in stationary phase (GASP) phenomenon under a high magnetic field |
Q33309765 | Diversification rates increase with population size and resource concentration in an unstructured habitat |
Q38403177 | Dynamics and genetic diversification of Escherichia coli during experimental adaptation to an anaerobic environment |
Q38202864 | Ecological and temporal constraints in the evolution of bacterial genomes. |
Q93014967 | Eukaryotic Adaptation to Years-Long Starvation Resembles that of Bacteria |
Q36456226 | Evolution of microbial diversity during prolonged starvation |
Q34297067 | Evolving responsively: adaptive mutation |
Q33755799 | Expression of Legionella pneumophila virulence traits in response to growth conditions |
Q57748489 | Flagellar elongation induced by glucose limitation is preadaptive forTrypanosoma cruzi differentiation |
Q34005325 | Frequent beneficial mutations during single-colony serial transfer of Streptococcus pneumoniae. |
Q39500749 | Function of the sigma(E) regulon in dead-cell lysis in stationary-phase Escherichia coli |
Q34718799 | Functional heterogeneity of RpoS in stress tolerance of enterohemorrhagic Escherichia coli strains |
Q34232088 | GacA regulates symbiotic colonization traits of Vibrio fischeri and facilitates a beneficial association with an animal host |
Q34643555 | General stress response regulator RpoS in adaptive mutation and amplification in Escherichia coli |
Q39538622 | Genetic antagonism and hypermutability in Mycobacterium smegmatis |
Q33886793 | Genome-wide hypermutation in a subpopulation of stationary-phase cells underlies recombination-dependent adaptive mutation |
Q39096320 | Genomewide Dam Methylation in Escherichia coli during Long-Term Stationary Phase |
Q33654823 | Global gene expression analysis of long-term stationary phase effects in E. coli K12 MG1655 |
Q33616929 | Identification of conserved amino acid residues of the Salmonella sigmaS chaperone Crl involved in Crl-sigmaS interactions. |
Q40437252 | Investigation of the first events leading to loss of culturability during Escherichia coli starvation: future nonculturable bacteria form a subpopulation |
Q43969685 | Involvement of caspase-3-like protein in rapid cell death of Xanthomonas |
Q36369839 | Long-term survival during stationary phase: evolution and the GASP phenotype |
Q38504593 | Loss of expression of cspC, a cold shock family gene, confers a gain of fitness in Escherichia coli K-12 strains |
Q33807803 | Metabolic fingerprinting of bacteria by fluorescence lifetime imaging microscopy. |
Q54495569 | Microarray analysis of RpoS-mediated gene expression in Escherichia coli K-12. |
Q89865024 | Mild stress conditions during laboratory culture promote the proliferation of mutations that negatively affect Sigma B activity in Listeria monocytogenes |
Q35190848 | Mismatch repair protein MutL becomes limiting during stationary-phase mutation |
Q44003594 | Molecular Basis of Stationary Phase Survival and Applications |
Q33682035 | Molecular inroads into the regulation and metabolism of fatty acids, lessons from bacteria |
Q33787450 | Multiprobe RNase protection assay analysis of mRNA levels for the Escherichia coli oxidative DNA glycosylase genes under conditions of oxidative stress |
Q40897789 | Mutation of a LysR-type regulator of antifungal activity results in a growth advantage in stationary phase phenotype in Pseudomonas aureofaciens PA147-2. |
Q33992996 | Mutations enhancing amino acid catabolism confer a growth advantage in stationary phase |
Q41940320 | Mutations in two global regulators lower individual mortality in Escherichia coli |
Q39891746 | Mutations that activate the silent bgl operon of Escherichia coli confer a growth advantage in stationary phase |
Q35690379 | Outer mitochondrial membrane permeability can regulate coupled respiration and cell survival |
Q35530168 | Phenotypic diversity caused by differential RpoS activity among environmental Escherichia coli isolates |
Q33603147 | Prolonged stationary-phase incubation selects for lrp mutations in Escherichia coli K-12 |
Q54254011 | Proteomics analysis of a long-term survival strain of Escherichia coli K-12 exhibiting a growth advantage in stationary-phase (GASP) phenotype. |
Q33879812 | Quorum sensing and starvation: signals for entry into stationary phase |
Q41819210 | Redox responses in yeast to acetate as the carbon source |
Q38374770 | Regulation of gene expression: cryptic β-glucoside (bgl) operon of Escherichia coli as a paradigm |
Q37033120 | Role of RpoS in the virulence of Citrobacter rodentium |
Q34419246 | Role of rpoS in Escherichia coli O157:H7 strain H32 biofilm development and survival |
Q33739792 | Role of the Escherichia coli SurA protein in stationary-phase survival. |
Q33733708 | RpoS (sigma-S) controls expression of rsmA, a global regulator of secondary metabolites, harpin, and extracellular proteins in Erwinia carotovora |
Q35625190 | RpoS- and OxyR-independent induction of HPI catalase at stationary phase in Escherichia coli and identification of rpoS mutations in common laboratory strains |
Q34616845 | SOD2 functions downstream of Sch9 to extend longevity in yeast |
Q24530758 | SOS-induced DNA polymerases enhance long-term survival and evolutionary fitness |
Q33700399 | Starvation for different nutrients in Escherichia coli results in differential modulation of RpoS levels and stability |
Q37710717 | Stationary phase in gram-negative bacteria. |
Q36260798 | Strain Library Imaging Protocol for high-throughput, automated single-cell microscopy of large bacterial collections arrayed on multiwell plates |
Q36321871 | Superoxide is a mediator of an altruistic aging program in Saccharomyces cerevisiae |
Q42275508 | The El Tor biotype of Vibrio cholerae exhibits a growth advantage in the stationary phase in mixed cultures with the classical biotype |
Q33236086 | The Escherichia coli BarA-UvrY two-component system is a virulence determinant in the urinary tract |
Q33730748 | The L-isoaspartyl protein repair methyltransferase enhances survival of aging Escherichia coli subjected to secondary environmental stresses |
Q51700308 | The evolution of contact-dependent inhibition in non-growing populations of Escherichia coli. |
Q40345503 | The growth advantage in stationary-phase phenotype conferred by rpoS mutations is dependent on the pH and nutrient environment |
Q47927849 | The nature of laboratory domestication changes in freshly isolated Escherichia coli strains |
Q34631670 | Transcription increases the deletion frequency of long CTG.CAG triplet repeats from plasmids in Escherichia coli |
Q43134134 | ppGpp-mediated stationary phase induction of the genes encoded by horizontally acquired pathogenicity islands and cob/pdu locus in Salmonella enterica serovar Typhimurium |
Q38464383 | rpoS mutants in archival cultures of Salmonella enterica serovar typhimurium |
Q33635870 | rsmC of the soft-rotting bacterium Erwinia carotovora subsp. carotovora negatively controls extracellular enzyme and harpin(Ecc) production and virulence by modulating levels of regulatory RNA (rsmB) and RNA-binding protein (RsmA). |
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