review article | Q7318358 |
scholarly article | Q13442814 |
P50 | author | Patricia L. Foster | Q41469351 |
P2093 | author name string | W A Rosche | |
P2860 | cites work | Haldane's solution of the Luria-Delbrück distribution | Q24532564 |
Mutations of Bacteria from Virus Sensitivity to Virus Resistance | Q24533278 | ||
Adaptive mutation: the uses of adversity | Q24596056 | ||
A constant rate of spontaneous mutation in DNA-based microbes | Q28271032 | ||
The origin of mutants | Q28288915 | ||
The distribution of the numbers of mutants in bacterial populations | Q29620123 | ||
Experiments with the Chemostat on spontaneous mutations of bacteria | Q33711073 | ||
Fluctuation analysis: the probability distribution of the number of mutants under different conditions | Q33956103 | ||
Adaptive reversion of a frameshift mutation in Escherichia coli | Q33958142 | ||
Luria-Delbrück fluctuation experiments: design and analysis | Q33962551 | ||
Destabilization of simple repetitive DNA sequences by transcription in yeast. | Q33967667 | ||
Statistical concepts in the theory of bacterial mutation | Q36413055 | ||
On fluctuation analysis: a new, simple and efficient method for computing the expected number of mutants | Q41645462 | ||
Bayesian procedures for the estimation of mutation rates from fluctuation experiments | Q42154305 | ||
Fluctuation tests: how reliable are the estimates of mutation rates? | Q42825321 | ||
A genetic strategy to demonstrate the occurrence of spontaneous mutations in nondividing cells within colonies of Escherichia coli | Q42968100 | ||
The frequency distribution of spontaneous bacteriophage mutants as evidence for the exponential rate of phage reproduction | Q45203828 | ||
A modified Luria-Delbrück fluctuation assay for estimating and comparing mutation rates | Q50138265 | ||
A note on efficient estimation of mutation rates using Luria-Delbrück fluctuation analysis. | Q52446251 | ||
P433 | issue | 1 | |
P304 | page(s) | 4-17 | |
P577 | publication date | 2000-01-01 | |
P1433 | published in | Methods | Q6823859 |
P1476 | title | Determining mutation rates in bacterial populations | |
P478 | volume | 20 |
Q92091359 | 1H-Benzo[d]Imidazole Derivatives Affect MmpL3 in Mycobacterium tuberculosis |
Q46200272 | A Bayesian approach for correcting for partial plating in fluctuation experiments |
Q51408067 | A Bayesian two-level model for fluctuation assay. |
Q42948978 | A DNA polymerase V homologue encoded by TOL plasmid pWW0 confers evolutionary fitness on Pseudomonas putida under conditions of environmental stress |
Q41449178 | A Novel Reduction Strategy of Clarithromycin Resistance in Helicobacter pylori |
Q63965569 | A Novel, Drug Resistance-Independent, Fluorescence-Based Approach To Measure Mutation Rates in Microbial Pathogens |
Q35740556 | A TetR-like regulator broadly affects the expressions of diverse genes in Mycobacterium smegmatis |
Q34746116 | A practical guide to measuring mutation rates in antibiotic resistance |
Q34615449 | A quantitative assay for telomere protection in Saccharomyces cerevisiae |
Q28534685 | A reversible histone H3 acetylation cooperates with mismatch repair and replicative polymerases in maintaining genome stability |
Q36969708 | A simple formula for obtaining markedly improved mutation rate estimates. |
Q51489925 | A trade-off between oxidative stress resistance and DNA repair plays a role in the evolution of elevated mutation rates in bacteria. |
Q36677347 | Accelerating Mutational Load Is Not Due to Synergistic Epistasis or Mutator Alleles in Mutation Accumulation Lines of Yeast |
Q34116088 | Adaptation and incipient sympatric speciation of Bacillus simplex under microclimatic contrast at "Evolution Canyons" I and II, Israel |
Q36689838 | Adaptive mutation: General mutagenesis is not a programmed response to stress but results from rare coamplification of dinB with lac |
Q35893213 | Adaptive mutation: how growth under selection stimulates Lac(+) reversion by increasing target copy number |
Q34436201 | Adaptive, or stationary-phase, mutagenesis, a component of bacterial differentiation in Bacillus subtilis |
Q36083521 | An engineered bacterium auxotrophic for an unnatural amino acid: a novel biological containment system |
Q57179045 | An unbiased attitude is vital to exploring the Beijing genotype of Mycobacterium tuberculosis |
Q35844885 | An unusual pattern of spontaneous mutations recovered in the halophilic archaeon Haloferax volcanii |
Q79773272 | Analysis of gross-chromosomal rearrangements in Saccharomyces cerevisiae |
Q33384119 | Anc1, a protein associated with multiple transcription complexes, is involved in postreplication repair pathway in S. cerevisiae. |
Q35317251 | Antimicrobials, stress and mutagenesis |
Q34417003 | Bacterial resistance to antisense peptide phosphorodiamidate morpholino oligomers |
Q54542427 | Baicalein suppresses the SOS response system of Staphylococcus aureus induced by ciprofloxacin. |
Q54360279 | Bootstrap estimation of confidence intervals on mutation rate ratios. |
Q56889333 | CRISPR-guided DNA polymerases enable diversification of all nucleotides in a tunable window |
Q64091348 | CRISPR-interference-based modulation of mobile genetic elements in bacteria |
Q37660623 | CX-5461 is a DNA G-quadruplex stabilizer with selective lethality in BRCA1/2 deficient tumours |
Q35760045 | Catastrophe and what to do about it if you are a bacterium: the importance of frameshift mutants |
Q54202855 | Cellular Assays for Studying the Fe-S Cluster Containing Base Excision Repair Glycosylase MUTYH and Homologs. |
Q33793074 | Challenges of antibacterial discovery |
Q35213214 | ClpR protein-like regulator specifically recognizes RecA protein-independent promoter motif and broadly regulates expression of DNA damage-inducible genes in mycobacteria |
Q33940504 | Clusters of nucleotide substitutions and insertion/deletion mutations are associated with repeat sequences |
Q42176192 | Co-evolution with lytic phage selects for the mucoid phenotype of Pseudomonas fluorescens SBW25. |
Q33525506 | Co-orientation of replication and transcription preserves genome integrity |
Q30300777 | Coevolution with bacteriophages drives genome-wide host evolution and constrains the acquisition of abiotic-beneficial mutations. |
Q42286301 | Coevolution with phages does not influence the evolution of bacterial mutation rates in soil |
Q34722064 | Coevolution with viruses drives the evolution of bacterial mutation rates. |
Q39759555 | Comparing mutation rates under the Luria-Delbrück protocol |
Q64114700 | Competing evolutionary paths in growing populations with applications to multidrug resistance |
Q42120097 | Contingency nature of Helicobacter bizzozeronii oxygen-insensitive NAD(P)H-nitroreductase (HBZC1_00960) and its role in metronidazole resistance |
Q41255353 | Contribution of increased mutagenesis to the evolution of pollutants-degrading indigenous bacteria |
Q37513635 | Contribution of the mismatch DNA repair system to the generation of stationary-phase-induced mutants of Bacillus subtilis |
Q30489589 | Cyanide, peroxide and nitric oxide formation in solutions of hydroxyurea causes cellular toxicity and may contribute to its therapeutic potency |
Q35036876 | Cytosine-to-uracil deamination by SssI DNA methyltransferase |
Q21090502 | DNA damage triggers genetic exchange in Helicobacter pylori |
Q94948390 | DNA polymerase ε relies on a unique domain for efficient replisome assembly and strand synthesis |
Q28305177 | DNA replication error-induced extinction of diploid yeast |
Q42041568 | Defects in the error prevention oxidized guanine system potentiate stationary-phase mutagenesis in Bacillus subtilis |
Q38859901 | Delayed lysis confers resistance to the nucleoside analogue 5-fluorouracil and alleviates mutation accumulation in the single-stranded DNA bacteriophage ϕX174. |
Q34973894 | Deletion mutations caused by DNA strand slippage in Acinetobacter baylyi |
Q40252456 | Deletion of the 2-acyl-glycerophosphoethanolamine cycle improve glucose metabolism in Escherichia coli strains employed for overproduction of aromatic compounds. |
Q42199897 | Depletion of Werner helicase results in mitotic hyperrecombination and pleiotropic homologous and nonhomologous recombination phenotypes |
Q53836887 | Detecting Rare Mutations and DNA Damage with Sequencing-Based Methods. |
Q37076747 | Determinants of Genetic Diversity of Spontaneous Drug Resistance in Bacteria |
Q98778556 | Direct quantification of ecological drift at the population level in synthetic bacterial communities |
Q56875376 | Directed evolution of Escherichia coli with lower-than-natural plasmid mutation rates |
Q91304272 | Discovery of Small-Molecule Antibiotics against a Unique tRNA-Mediated Regulation of Transcription in Gram-Positive Bacteria |
Q30577815 | Discussion on research methods of bacterial resistant mutation mechanisms under selective culture--uncertainty analysis of data from the Luria-Delbrück fluctuation experiment |
Q87138971 | Disentangling mechanisms involved in the adaptation of photosynthetic microorganisms to the extreme sulphureous water from Los Baños de Vilo (S Spain) |
Q22122042 | Distribution of fitness effects among beneficial mutations before selection in experimental populations of bacteria |
Q34191816 | DnaE2 polymerase contributes to in vivo survival and the emergence of drug resistance in Mycobacterium tuberculosis |
Q34195488 | Effect of growth under selection on appearance of chromosomal mutations in Salmonella enterica |
Q46546957 | Effect of subinhibitory concentrations of ciprofloxacin on Mycobacterium fortuitum mutation rates |
Q35221630 | Effect of the major repeat sequence on mitotic recombination in Candida albicans |
Q92203157 | Effective mismatch repair depends on timely control of PCNA retention on DNA by the Elg1 complex |
Q30828514 | Effects of new mutations on fitness: insights from models and data |
Q37032794 | Efficacy of ciprofloxacin and moxifloxacin against Nocardia brasiliensis in vitro and in an experimental model of actinomycetoma in BALB/c mice. |
Q41915989 | Elevated mutation frequency in surviving populations of carbon-starved rpoS-deficient Pseudomonas putida is caused by reduced expression of superoxide dismutase and catalase |
Q35877971 | Elimination of Chromosomal Island SpyCIM1 from Streptococcus pyogenes Strain SF370 Reverses the Mutator Phenotype and Alters Global Transcription |
Q38769394 | Emergence of Hyper-Resistant Escherichia coli MG1655 Derivative Strains after Applying Sub-Inhibitory Doses of Individual Constituents of Essential Oils. |
Q28536141 | Endogenous stress caused by faulty oxidation reactions fosters evolution of 2,4-dinitrotoluene-degrading bacteria |
Q33878219 | Enhancing multiplex genome editing by natural transformation (MuGENT) via inactivation of ssDNA exonucleases |
Q91341339 | Epigenetic gene silencing alters the mechanisms and rate of evolutionary adaptation |
Q34091159 | Escherichia coli DNA glycosylase Mug: a growth-regulated enzyme required for mutation avoidance in stationary-phase cells |
Q34206452 | Escherichia coli frameshift mutation rate depends on the chromosomal context but not on the GATC content near the mutation site |
Q36391958 | Estimating the per-base-pair mutation rate in the yeast Saccharomyces cerevisiae |
Q40619337 | Estimation of Spontaneous Mutation Rates |
Q86095467 | Evaluating evolutionary models of stress-induced mutagenesis in bacteria |
Q28551519 | Evidence of a Mild Mutator Phenotype in Cambodian Plasmodium falciparum Malaria Parasites |
Q52568580 | Evolution of high-level resistance during low-level antibiotic exposure. |
Q47928367 | Evolutionary loss of the rdar morphotype in Salmonella as a result of high mutation rates during laboratory passage |
Q34569582 | Experimental adaptation of Salmonella typhimurium to mice |
Q52681774 | Explosive mutation accumulation triggered by heterozygous human Pol ε proofreading-deficiency is driven by suppression of mismatch repair. |
Q43967548 | Expression of mutant alanine tRNAs increases spontaneous mutagenesis in Escherichia coli |
Q33430666 | Fluctuation analysis CalculatOR: a web tool for the determination of mutation rate using Luria-Delbruck fluctuation analysis |
Q35069460 | Fluctuation analysis: can estimates be trusted? |
Q44410106 | Fluoroquinolone Resistance inStreptococcus pneumoniae: Evidence ThatgyrAMutations Arise at a Lower Rate and That Mutation ingyrAorparCPredisposes to Further Mutation |
Q36482751 | Fluoroquinolone-resistant mutants of Burkholderia cepacia |
Q35059320 | Founder niche constrains evolutionary adaptive radiation |
Q33951115 | Frameshift mutagenesis and microsatellite instability induced by human alkyladenine DNA glycosylase. |
Q42222540 | Freeing Pseudomonas putida KT2440 of its proviral load strengthens endurance to environmental stresses |
Q28486854 | Function and regulation of class I ribonucleotide reductase-encoding genes in mycobacteria |
Q53384775 | General formulation of Luria-Delbrück distribution of the number of mutants. |
Q90500660 | Genetic Assays to Study Repeat Fragility in Saccharomyces cerevisiae |
Q35679909 | Genetic Basis and Functional Consequences of Differential Expression of the CmeABC Efflux Pump in Campylobacter jejuni Isolates |
Q38980350 | Genetic drift, selection and the evolution of the mutation rate |
Q35222738 | Genetic variation and the fate of beneficial mutations in asexual populations |
Q36973626 | Genomic insights into the fate of colistin resistance and Acinetobacter baumannii during patient treatment |
Q34187406 | Genomic mutation rates: what high-throughput methods can tell us |
Q36211589 | Genomic variations leading to alterations in cell morphology of Campylobacter spp. |
Q55285004 | High mutation rates limit evolutionary adaptation in Escherichia coli. |
Q46952641 | High rate of starvation-associated mutagenesis in Ung(-) yeast caused by the overproduction of human activation-induced deaminase |
Q33285899 | Hin-mediated DNA knotting and recombining promote replicon dysfunction and mutation |
Q35903810 | Human Pol ε-dependent replication errors and the influence of mismatch repair on their correction |
Q24678876 | Human activation-induced cytidine deaminase causes transcription-dependent, strand-biased C to U deaminations |
Q34762532 | Identification of frame-shift intermediate mutant cells |
Q36094891 | Identifying mutator phenotypes among fluoroquinolone-resistant strains of Streptococcus pneumoniae using fluctuation analysis. |
Q35759371 | In vitro analysis of rates and spectra of mutations in a polymorphic region of the Rv0746 PE_PGRS gene of Mycobacterium tuberculosis |
Q92237029 | In vitro reduction of colistin susceptibility and comparative genomics reveals multiple differences between MCR-positive and MCR-negative colistin-resistant Escherichia coli |
Q21146100 | Inhibition of mutation and combating the evolution of antibiotic resistance |
Q35065478 | Insights into mutagenesis using Escherichia coli chromosomal lacZ strains that enable detection of a wide spectrum of mutational events. |
Q31777720 | Interacting fidelity defects in the replicative DNA polymerase of bacteriophage RB69. |
Q27939439 | Interactions among DNA ligase I, the flap endonuclease and proliferating cell nuclear antigen in the expansion and contraction of CAG repeat tracts in yeast |
Q40763644 | Involvement of error-prone DNA polymerase IV in stationary-phase mutagenesis in Pseudomonas putida |
Q64097358 | Lighting Up Mutation: a New Unbiased System for the Measurement of Microbial Mutation Rates |
Q35155281 | Lipopolysaccharide-Deficient Brucella Variants Arise Spontaneously during Infection |
Q36523158 | Long-term survival of Streptococcus pyogenes in rich media is pH-dependent |
Q90186558 | Low mutational load and high mutation rate variation in gut commensal bacteria |
Q27659930 | Magnesium Coordination Controls the Molecular Switch Function of DNA Mismatch Repair Protein MutS |
Q47771419 | Measuring Mutation Rates Using the Luria-Delbrück Fluctuation Assay |
Q50049967 | Mechanisms and physiological effects of protamine resistance in Salmonella enterica serovar Typhimurium LT2. |
Q42620101 | Methods for determining spontaneous mutation rates |
Q50086346 | Methods to Study Repeat Fragility and Instability in Saccharomyces cerevisiae |
Q42166009 | Mismatch Repair Modulation of MutY Activity Drives Bacillus subtilis Stationary-Phase Mutagenesis |
Q37733854 | Mismatch repair at stop codons is directed independent of GATC methylation on the Escherichia coli chromosome. |
Q28486079 | Mitotic evolution of Plasmodium falciparum shows a stable core genome but recombination in antigen families |
Q47963808 | Molecular basis for the functions of a bacterial MutS2 in DNA repair and recombination |
Q33690962 | Multiple genetic switches spontaneously modulating bacterial mutability |
Q33530108 | MutS and MutL are dispensable for maintenance of the genomic mutation rate in the halophilic archaeon Halobacterium salinarum NRC-1. |
Q34465215 | Mutation frequency and spectrum of mutations vary at different chromosomal positions of Pseudomonas putida |
Q39145276 | Mutation rate plasticity in rifampicin resistance depends on Escherichia coli cell-cell interactions. |
Q35205793 | Mutation rates across budding yeast chromosome VI are correlated with replication timing |
Q34055320 | Mutator suppression and escape from replication error-induced extinction in yeast |
Q28548282 | Mycobacterium tuberculosis Is Resistant to Isoniazid at a Slow Growth Rate by Single Nucleotide Polymorphisms in katG Codon Ser315 |
Q37184072 | Mycobacterium tuberculosis mutation rate estimates from different lineages predict substantial differences in the emergence of drug-resistant tuberculosis |
Q60023160 | Nano-metal oxides induce antimicrobial resistance via radical-mediated mutagenesis |
Q89566201 | Non-antimicrobial pharmaceuticals can affect the development of antibiotic resistance in hospital wastewater |
Q41832657 | Novel non-Mendelian determinant involved in the control of translation accuracy in Saccharomyces cerevisiae |
Q35130221 | Novel role of mfd: effects on stationary-phase mutagenesis in Bacillus subtilis |
Q57009219 | Nucleosomes around a mismatched base pair are excluded via an Msh2-dependent reaction with the aid of SNF2 family ATPase Smarcad1 |
Q42240703 | Occurrence of weak mutators among avian pathogenic Escherichia coli (APEC) isolates causing salpingitis and peritonitis in broiler breeders |
Q42412527 | Oxidative DNA damage defense systems in avoidance of stationary-phase mutagenesis in Pseudomonas putida |
Q37194752 | Oxidative damage and mutagenesis in Saccharomyces cerevisiae: genetic studies of pathways affecting replication fidelity of 8-oxoguanine |
Q42408681 | PCNA Retention on DNA into G2/M Phase Causes Genome Instability in Cells Lacking Elg1. |
Q41818615 | Paralog-Specific Functions of RPL7A and RPL7B Mediated by Ribosomal Protein or snoRNA Dosage in Saccharomyces cerevisiae |
Q36466357 | Pathways of genetic adaptation: multistep origin of mutants under selection without induced mutagenesis in Salmonella enterica |
Q36199647 | Phage-Like Streptococcus pyogenes Chromosomal Islands (SpyCI) and Mutator Phenotypes: Control by Growth State and Rescue by a SpyCI-Encoded Promoter |
Q36933187 | Phage-associated mutator phenotype in group A streptococcus |
Q33555316 | Pharmacodynamic modeling of ciprofloxacin resistance in Staphylococcus aureus |
Q42125442 | Polyphosphate kinase regulates error-prone replication by DNA polymerase IV in Escherichia coli |
Q39005916 | Population Heterogeneity in Mutation Rate Increases the Frequency of Higher-Order Mutants and Reduces Long-Term Mutational Load. |
Q60916118 | Predicting mutational routes to new adaptive phenotypes |
Q45396390 | Programming adaptive control to evolve increased metabolite production. |
Q51798245 | Proliferation model dependence in fluctuation analysis: the neutral case. |
Q47145052 | Quantitative Analysis of the Rates for Repeat-Mediated Genome Instability in a Yeast Experimental System |
Q49986734 | Quantitative evaluation of DNA damage and mutation rate by atmospheric and room-temperature plasma (ARTP) and conventional mutagenesis |
Q38406930 | Rapid fluorometric quantification of bacterial cells using Redsafe nucleic acid stain |
Q42910136 | Rates and mechanisms of resistance development in Mycobacterium tuberculosis to a novel diarylquinoline ATP synthase inhibitor |
Q90748896 | Rationally designed perturbation factor drives evolution in Saccharomyces cerevisiae for industrial application |
Q36159482 | Resistance of Francisella novicida to fosmidomycin associated with mutations in the glycerol-3-phosphate transporter |
Q40310297 | Role of Bacillus subtilis DNA Glycosylase MutM in Counteracting Oxidatively Induced DNA Damage and in Stationary-Phase-Associated Mutagenesis |
Q92256660 | Role of Hfq in Genome Evolution: Instability of G-Quadruplex Sequences in E. coli |
Q42324867 | Role of Ribonucleotide Reductase in Bacillus subtilis Stress-Associated Mutagenesis |
Q35691709 | Role of a MutY DNA glycosylase in combating oxidative DNA damage in Helicobacter pylori |
Q33769195 | Role of the DinB homologs Rv1537 and Rv3056 in Mycobacterium tuberculosis |
Q33792439 | Role of the dinB gene product in spontaneous mutation in Escherichia coli with an impaired replicative polymerase |
Q34810207 | Roles of YqjH and YqjW, homologs of the Escherichia coli UmuC/DinB or Y superfamily of DNA polymerases, in stationary-phase mutagenesis and UV-induced mutagenesis of Bacillus subtilis |
Q33953638 | SOS mutator DNA polymerase IV functions in adaptive mutation and not adaptive amplification |
Q50948776 | SSB recruitment of Exonuclease I aborts template-switching in Escherichia coli. |
Q28254244 | SUMO-modified PCNA recruits Srs2 to prevent recombination during S phase |
Q37313069 | SUMOylation of Rad52-Rad59 synergistically change the outcome of mitotic recombination. |
Q47254650 | Sexual recombination and increased mutation rate expedite evolution of Escherichia coli in varied fitness landscapes |
Q34514283 | Single-strand-specific exonucleases prevent frameshift mutagenesis by suppressing SOS induction and the action of DinB/DNA polymerase IV in growing cells |
Q50134974 | Sources of spontaneous mutagenesis in bacteria. |
Q64971939 | Spatial structure facilitates the accumulation and persistence of antibiotic-resistant mutants in biofilms. |
Q28477566 | Spontaneous emergence of multiple drug resistance in tuberculosis before and during therapy |
Q35142782 | Spontaneous mitotic homologous recombination at an enhanced yellow fluorescent protein (EYFP) cDNA direct repeat in transgenic mice |
Q90237008 | Spontaneous mutations conferring antibiotic resistance to antitubercular drugs at a range of concentrations in Mycobacterium smegmatis |
Q39476503 | Spontaneous mutations that confer antibiotic resistance in Helicobacter pylori |
Q41842482 | Stationary-Phase Mutagenesis in Stressed Bacillus subtilis Cells Operates by Mfd-Dependent Mutagenic Pathways. |
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Q30576045 | Strain-specific parallel evolution drives short-term diversification during Pseudomonas aeruginosa biofilm formation |
Q39604653 | Structure and temporal dynamics of populations within wheat streak mosaic virus isolates |
Q61451258 | Sub-Inhibitory Doses of Individual Constituents of Essential Oils Can Select for Resistant Mutants |
Q24625342 | Sublethal antibiotic treatment leads to multidrug resistance via radical-induced mutagenesis |
Q51245149 | Sublethal streptomycin concentrations and lytic bacteriophage together promote resistance evolution. |
Q33804367 | Synthetic Microbial Ecology: Engineering Habitats for Modular Consortia |
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Q90159634 | The Genetic Background Modulates the Evolution of Fluoroquinolone-Resistance in Mycobacterium tuberculosis |
Q57935420 | The Metabolic Redox Regime of Pseudomonas putida Tunes Its Evolvability toward Novel Xenobiotic Substrates |
Q35675296 | The Molecular and Genetic Basis of Repeatable Coevolution between Escherichia coli and Bacteriophage T3 in a Laboratory Microcosm |
Q53786053 | The SOS response increases bacterial fitness, but not evolvability, under a sublethal dose of antibiotic. |
Q36580706 | The effect of sequence context on spontaneous Polzeta-dependent mutagenesis in Saccharomyces cerevisiae |
Q34565434 | The evolution of antibiotic susceptibility and resistance during the formation of Escherichia coli biofilms in the absence of antibiotics |
Q34565897 | The formation of persister cells in stationary-phase cultures of Escherichia coli is associated with the aggregation of endogenous proteins |
Q37397445 | The mother enrichment program: a genetic system for facile replicative life span analysis in Saccharomyces cerevisiae |
Q42637285 | The mutT defect does not elevate chromosomal fragmentation in Escherichia coli because of the surprisingly low levels of MutM/MutY-recognized DNA modifications |
Q42097259 | The nature of mutations induced by replication–transcription collisions. |
Q36873658 | The rate and character of spontaneous mutation in Thermus thermophilus |
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Q40828487 | The role of break-induced replication in large-scale expansions of (CAG)n/(CTG)n repeats. |
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