Difference between revisions of "PMID:23224554"
(Table edited by Joncrz via TableEdit) |
(Table edited by Wameza via TableEdit) |
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
Line 269: | Line 269: | ||
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
Line 285: | Line 285: | ||
*NCBI Taxon ID: [http://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?mode=Info&id=83333&lvl=3&lin=f&keep=1&srchmode=1&unlock 83333] | *NCBI Taxon ID: [http://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?mode=Info&id=83333&lvl=3&lin=f&keep=1&srchmode=1&unlock 83333] | ||
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− | *Genotype of Reference Strain: '' | + | *Genotype of Reference Strain: ''metJ'' |
− | *Genotype of Experimental Strain : '' | + | *Genotype of Experimental Strain : ''metJ725''(del)::FRTKanFRT |
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*Reference Condition: | *Reference Condition: | ||
Line 294: | Line 294: | ||
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
Line 319: | Line 319: | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
Line 344: | Line 344: | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
Line 444: | Line 444: | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
Line 469: | Line 469: | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
Line 494: | Line 494: | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
Line 544: | Line 544: | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. | ||
Line 569: | Line 569: | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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A Stress Induced Mutagenesis phenotype (SIM). A strong mutation, SIM was reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | A Stress Induced Mutagenesis phenotype (SIM). A strong mutation, SIM was reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | ||
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− | + | 0000178 | |
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− | + | in vivo assay evidence | |
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A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. | ||
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*Genotype of Reference Strain: ''yhhK'' | *Genotype of Reference Strain: ''yhhK'' | ||
*Genotype of Experimental Strain : ''yhhK::Tn10dCam'' | *Genotype of Experimental Strain : ''yhhK::Tn10dCam'' | ||
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*Reference Condition: | *Reference Condition: |
Revision as of 13:03, 14 January 2013
Citation |
Al Mamun, AA , Lombardo, MJ , Shee, C , Lisewski, AM , Gonzalez, C , Lin, D , Nehring, RB , Saint-Ruf, C , Gibson, JL , Frisch, RL , Lichtarge, O , Hastings, PJ and Rosenberg, SM (2012) Identity and function of a large gene network underlying mutagenic repair of DNA breaks. Science 338:1344-8 |
---|---|
Abstract |
Mechanisms of DNA repair and mutagenesis are defined on the basis of relatively few proteins acting on DNA, yet the identities and functions of all proteins required are unknown. Here, we identify the network that underlies mutagenic repair of DNA breaks in stressed Escherichia coli and define functions for much of it. Using a comprehensive screen, we identified a network of ≥93 genes that function in mutation. Most operate upstream of activation of three required stress responses (RpoS, RpoE, and SOS, key network hubs), apparently sensing stress. The results reveal how a network integrates mutagenic repair into the biology of the cell, show specific pathways of environmental sensing, demonstrate the centrality of stress responses, and imply that these responses are attractive as potential drug targets for blocking the evolution of pathogens. |
Links |
PubMed Online version:10.1126/science.1226683 |
Keywords |
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edit table |
Main Points of the Paper
Please summarize the main points of the paper.
Materials and Methods Used
Please list the materials and methods used in this paper (strains, plasmids, antibodies, etc).
Phenotype Annotations
See Help:AnnotationTable for details on how to edit this table.
<protect>
Phenotype of | Taxon Information | Genotype Information (if known) | Condition Information | OMP ID | OMP Term Name | ECO ID | ECO Term Name | Notes | Status |
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a mutation or genetic difference within a strain |
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0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
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a mutation or genetic difference within a strain |
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|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
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|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
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Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
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|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
A Stress Induced Mutagenesis phenotype (SIM). A strong mutation, SIM was reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||
a mutation or genetic difference within a strain |
|
|
|
0000178 |
in vivo assay evidence |
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||
a mutation or genetic difference within a strain |
|
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|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
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|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
A Stress Induced Mutagenesis phenotype (SIM). The mutation caused a significant decrease in SIM, with mutant frequency being reduced by over 90 percent of wild type levels. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
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Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Stress Induced Mutagenesis Phenotype, the mutation caused a significant decrease in SIM with mutant frequency being decreased by 68 to 89 percent of the wild type. See table S3 for full experimental data. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
|||||
a mutation or genetic difference within a strain |
|
|
|
Decreased stress-induced mutagenesis (SIM) phenotype. Mutation Rate was comparatively weak, to other strains, with decrease only happening in 33-67% of wild type population. |
| ||||
edit table |
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Notes
References
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