Search results for "coat color"

showing 4 items of 4 documents

Missense and nonsense mutations in melanocortin 1 receptor (MC1R) gene of different goat breeds: association with red and black coat colour phenotype…

2009

Abstract Background Agouti and Extension loci control the relative amount of eumelanin and pheomelanin production in melanocytes that, in turn, affects pigmentation of skin and hair. The Extension locus encodes the melanocortin 1 receptor (MC1R) whose permanent activation, caused by functional mutations, results in black coat colour, whereas other inactivating mutations cause red coat colour in different mammals. Results The whole coding region of the MC1R gene was sequenced in goats of six different breeds showing different coat colours (Girgentana, white cream with usually small red spots in the face; Maltese, white with black cheeks and ears; Derivata di Siria, solid red; Murciano-Granad…

Silent mutationCoatlcsh:QH426-470GenotypeMolecular Sequence DataNonsense mutationPopulationMutation MissenseMELANISMBiologyPolymorphism Single NucleotideAGOUTI PROTEINSettore AGR/17 - Zootecnica Generale E Miglioramento GeneticoMSH RECEPTORBREEDSMC1RGeneticsAnimalsMissense mutationGenetics(clinical)Amino Acid Sequencecoat colour; MC1R; goatAlleleHair ColoreducationAllele frequencyPOPULATIONPOLYMORPHISMSAllelesGenetics (clinical)Geneticseducation.field_of_studySTIMULATING-HORMONE-RECEPTORGoatsgoatCATTLE BREEDSSequence Analysis DNAMolecular biologyCOAT COLORlcsh:GeneticsPhenotypeCodon NonsensePIGMENTATIONWHITEReceptor Melanocortin Type 1EXTENSIONcoat colourResearch ArticleMelanocortin 1 receptorBMC Genetics
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Copy number variation and missense mutations of the agouti signaling protein (ASIP) gene in goat breeds with different coat colors.

2009

In goats, classical genetic studies reported a large number of alleles at the Agouti locus with effects on coat color and pattern distribution. From these early studies, the dominant A(Wt) (white/tan) allele was suggested to cause the white color of the Saanen breed. Here, we sequenced the coding region of the goat ASIP gene in 6 goat breeds (Girgentana, Maltese, Derivata di Siria, Murciano-Granadina, Camosciata delle Alpi, and Saanen), with different coat colors and patterns. Five single nucleotide polymorphisms (SNPs) were identified, 3 of which caused missense mutations in conserved positions of the cysteine-rich carboxy-terminal domain of the protein (p.Ala96Gly, p.Cys126Gly, and p.Val1…

Comparative Genomic HybridizationBase SequenceDNA Copy Number VariationsGoatsCapra hircuCNVMolecular Sequence DataMutation MissenseSNPColorBreedingPolymorphism Single NucleotideCOAT COLORSettore AGR/17 - Zootecnica Generale E Miglioramento GeneticoBREEDSaCGHAgouti locuASIP GENEGOATAgouti Signaling ProteinAnimalsHumansAmino Acid SequenceSequence AlignmentCytogenetic and genome research
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A combined genome-wide approach identifies a new potential candidate marker associated with the coat color sidedness in cattle

2019

Abstract Coat color is one of the most important phenotypic features in livestock breeds. Cinisara is a local cattle breed generally of uniform black color which occasionally presents a particular phenotype, with animals typically display a white band along their spine, from the head to the tail, and on the ventral line (color sidedness). Therefore, this breed provides an ideal model to study the genetic components underlying phenotypic variation in coat color. A total of 63 animals, ten with sidedness phenotype and 53 with uniform black color were genotyped with Illumina Bovine 50 K. The comparison among genome-wide association study and FST analysis revealed a single nucleotide polymorphi…

GeneticsPLK2 geneCandidate geneCoatGeneral VeterinarySingle-nucleotide polymorphismBiologyCoat colorPhenotypeGenomeSTSettore AGR/17 - Zootecnica Generale E Miglioramento GeneticoFCoat color GWAS F-ST cattle PLK2 geneGWASSNPCattleAnimal Science and ZoologyGenetic variabilitySettore SECS-S/01 - StatisticaGeneLivestock Science
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Fifteen Shades of Grey: Combined Analysis of Genome-Wide SNP Data in Steppe and Mediterranean Grey Cattle Sheds New Light on the Molecular Basis of C…

2020

Coat color is among the most distinctive phenotypes in cattle. Worldwide, several breeds share peculiar coat color features such as the presence of a fawn pigmentation of the calf at birth, turning over time to grey, and sexual dichromatism. The aim of this study was to search for polymorphisms under differential selection by contrasting grey cattle breeds displaying the above phenotype with non-grey cattle breeds, and to identify the underlying genes. Using medium-density SNP array genotype data, a multi-cohort FST-outlier approach was adopted for a total of 60 pair-wise comparisons of the 15 grey with 4 non-grey cattle breeds (Angus, Limousin, Charolais, and Holstein), with the latter sel…

0301 basic medicineCandidate geneCoatGenotypelcsh:QH426-470cattle coat color hair greying pigmentation selection signatures SNPsBiologyBreedingGenomePolymorphism Single Nucleotideselection signaturesArticle03 medical and health sciencesSettore AGR/17 - Zootecnica Generale E Miglioramento GeneticoQuantitative Trait HeritableGenotypeGeneticsAnimalsGene Regulatory NetworkspigmentationSelection GeneticHair ColorGeneGenetics (clinical)AllelesGenetic Association Studiescoat colorGenomeDichromatismGene Expression Profiling0402 animal and dairy science04 agricultural and veterinary sciences040201 dairy & animal sciencePhenotypelcsh:Genetics030104 developmental biologyPhenotypeEvolutionary biologycattleCattle; Coat color; Hair greying; Pigmentation; Selection signatures; SNPshair greyingSNP arrayGenome-Wide Association StudySNPsGenes
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