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Increased glycolytic flux as an outcome of whole-genome duplication in yeast. GC Conant and KH Wolfe, Mol Syst Biol 3:129,2007 This is the original model reproducing figure 2A of the article submitted by the authors. There exists a curated version...
2005-01-01 | MODEL2426780967 | BioModels
Increased glycolytic flux as an outcome of whole-genome duplication in yeast. GC Conant and KH Wolfe, Mol Syst Biol 3:129,2007 This is the original model reproducing figure 3A of the article submitted by the authors. There exists a curated version...
2005-01-01 | MODEL2427021978 | BioModels
This a model from the article: Increased glycolytic flux as an outcome of whole-genome duplication in yeast. Conant GC, Wolfe KH Mol. Syst. Biol. [2007 ; Volume: 3 (Issue: )]: 129 17667951 , Abstract: Aft...
2024-09-02 | BIOMD0000000176 | BioModels
This a model from the article: Increased glycolytic flux as an outcome of whole-genome duplication in yeast. Conant GC, Wolfe KH Mol. Syst. Biol. [2007 ; Volume: 3 (Issue: )]: 129 17667951 , Abstract: Aft...
2024-09-02 | BIOMD0000000177 | BioModels
In the yeast genera Saccharomycopsis and Ascoidea, nuclear genes use a non-standard genetic code in which CUG codons are translated as serine instead of leucine, due to the presence of a tRNA-Ser with the unusual anticodon CAG. However, some species in this ‘CUG-Ser2’ clade also contain an ancestral...
ORGANISM(S): Saccharomycopsis capsularis 
2024-10-17 | PXD044731 | Pride
In the yeast genera Saccharomycopsis and Ascoidea, nuclear genes use a non-standard genetic code in which CUG codons are translated as serine instead of leucine, due to the presence of a tRNA-Ser with the unusual anticodon CAG. However, some species in this ‘CUG-Ser2’ clade also contain an ancestral...
ORGANISM(S): Saccharomycopsis capsularis 
2024-10-17 | PXD044763 | Pride
In the yeast genera Saccharomycopsis and Ascoidea, nuclear genes use a non-standard genetic code in which CUG codons are translated as serine instead of leucine, due to the presence of a tRNA-Ser with the unusual anticodon CAG. However, some species in this ‘CUG-Ser2’ clade also contain an ancestral...
ORGANISM(S): Saccharomycopsis capsularis 
2024-10-17 | PXD044772 | Pride
In the yeast genera Saccharomycopsis and Ascoidea, nuclear genes use a non-standard genetic code in which CUG codons are translated as serine instead of leucine, due to the presence of a tRNA-Ser with the unusual anticodon CAG. However, some species in this ‘CUG-Ser2’ clade also contain an ancestral...
ORGANISM(S): Saccharomycopsis capsularis 
2024-10-17 | PXD044742 | Pride
In the yeast genera Saccharomycopsis and Ascoidea, nuclear genes use a non-standard genetic code in which CUG codons are translated as serine instead of leucine, due to the presence of a tRNA-Ser with the unusual anticodon CAG. However, some species in this ‘CUG-Ser2’ clade also contain an ancestral...
ORGANISM(S): Saccharomycopsis capsularis 
2024-10-17 | PXD044729 | Pride
In the yeast genera Saccharomycopsis and Ascoidea, nuclear genes use a non-standard genetic code in which CUG codons are translated as serine instead of leucine, due to the presence of a tRNA-Ser with the unusual anticodon CAG. However, some species in this ‘CUG-Ser2’ clade also contain an ancestral...
ORGANISM(S): Saccharomycopsis capsularis 
2024-10-17 | PXD044788 | Pride
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