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Development Genes and Evolution
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September 25, 2008
Evolution of DNA-methylation machinery: DNA methyltransferases and methyl-DNA binding proteins in the amphioxus Branchiostoma floridae
Ricard Albalat
Molecular Biology and Evolution
|
February 10, 2012
Evolution of the genetic machinery of the visual cycle: a novelty of the vertebrate eye?
Ricard Albalat
Molecular and Cellular Endocrinology
|
September 10, 2009
The retinoic acid machinery in invertebrates: ancestral elements and vertebrate innovations
Ricard Albalat
Nature Reviews. Genetics
|
April 19, 2016
Evolution by gene loss
Ricard Albalat, Cristian Cañestro
Chemico-Biological Interactions
|
October 18, 2008
Identification of Aldh1a, Cyp26 and RAR orthologs in protostomes pushes back the retinoic acid genetic machinery in evolutionary time to the bilaterian ancestor
Ricard Albalat, Cristian Cañestro
Briefings in Functional Genomics
|
March 6, 2012
Transposon diversity is higher in amphioxus than in vertebrates: functional and evolutionary inferences
Cristian Cañestro, Ricard Albalat
Scientific Reports
|
March 25, 2026
The evolutionary history of chelicerate metallothioneins reveals de novo emergence and metal-binding specialization across the subphylum
Òscar Palacios, Mercè Capdevila, Ricard Albalat
Gene Expression Patterns : GEP
|
November 21, 2009
Identification and characterisation of the developmental expression pattern of tbx5b, a novel tbx5 gene in zebrafish
Ricard Albalat, Mireia Baquero, Carolina Minguillón
The FEBS Journal
|
July 5, 2007
Analysis of the NADH-dependent retinaldehyde reductase activity of amphioxus retinol dehydrogenase enzymes enhances our understanding of the evolution of the retinol dehydrogenase family
Diana Dalfó, Neus Marqués, Ricard Albalat
Genome Biology and Evolution
|
January 8, 2026
Myriapod Metallothioneins Conserve the Ancestral Architecture of Arthropods while Displaying Lineage-Specific Adaptations in Metal Binding
Òscar Palacios, Mercè Capdevila, Ricard Albalat
Page
of 6
Search research articles
Search
Showing results (1-10 of 55) with videos related to
Sort By:
Page
of 6
Development Genes and Evolution
|
September 25, 2008
Evolution of DNA-methylation machinery: DNA methyltransferases and methyl-DNA binding proteins in the amphioxus Branchiostoma floridae
Ricard Albalat
Molecular Biology and Evolution
|
February 10, 2012
Evolution of the genetic machinery of the visual cycle: a novelty of the vertebrate eye?
Ricard Albalat
Molecular and Cellular Endocrinology
|
September 10, 2009
The retinoic acid machinery in invertebrates: ancestral elements and vertebrate innovations
Ricard Albalat
Nature Reviews. Genetics
|
April 19, 2016
Evolution by gene loss
Ricard Albalat, Cristian Cañestro
Chemico-Biological Interactions
|
October 18, 2008
Identification of Aldh1a, Cyp26 and RAR orthologs in protostomes pushes back the retinoic acid genetic machinery in evolutionary time to the bilaterian ancestor
Ricard Albalat, Cristian Cañestro
Briefings in Functional Genomics
|
March 6, 2012
Transposon diversity is higher in amphioxus than in vertebrates: functional and evolutionary inferences
Cristian Cañestro, Ricard Albalat
Scientific Reports
|
March 25, 2026
The evolutionary history of chelicerate metallothioneins reveals de novo emergence and metal-binding specialization across the subphylum
Òscar Palacios, Mercè Capdevila, Ricard Albalat
Gene Expression Patterns : GEP
|
November 21, 2009
Identification and characterisation of the developmental expression pattern of tbx5b, a novel tbx5 gene in zebrafish
Ricard Albalat, Mireia Baquero, Carolina Minguillón
The FEBS Journal
|
July 5, 2007
Analysis of the NADH-dependent retinaldehyde reductase activity of amphioxus retinol dehydrogenase enzymes enhances our understanding of the evolution of the retinol dehydrogenase family
Diana Dalfó, Neus Marqués, Ricard Albalat
Genome Biology and Evolution
|
January 8, 2026
Myriapod Metallothioneins Conserve the Ancestral Architecture of Arthropods while Displaying Lineage-Specific Adaptations in Metal Binding
Òscar Palacios, Mercè Capdevila, Ricard Albalat
Page
of 6