0000000000713171

AUTHOR

Roberta Davoli

showing 7 related works from this author

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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Analysis of the melanocortin receptor 1 (MC1R) gene in Sicilian goat breeds

2010

AbstractMammalian coat colour is mainly determined by the distribution of two different types of melanins: pheomelanin (red/yellow pigments) and eumelanin (black pigments). Their synthesis is regulated by the melanocortin 1 receptor (MC1R/Extension locus) that binds the α-melanocyte-stimulating hormone (α-MSH) and the agouti signalling protein (ASIP, coded by the Agouti locus). In mammals, several studies have reported that loss-of-function mutations in MC1R lead to red/yellow pigmentation, while gain-of-function mutations lead to black/dark colours. Mutations at the Agouti locus exert, in general, epistatic interactions on the Extension locus. In goats, classical genetic studies have indic…

GeneticsCoatintegumentary systemMUTATIONSdigestive oral and skin physiologygoatLocus (genetics)Phenotypic traitCOAT COLOUR GENESBiologySettore AGR/17 - Zootecnica Generale E Miglioramento GeneticoBREEDSMC1RMelanocortin Receptor 1EpistasisAnimal Science and Zoologylcsh:Animal cultureMc1r genelcsh:SF1-1100Melanocortin 1 receptor
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Beta-lactoglobulin polymorphism in Girgentana goat breed

2007

Beta-lactoglobulin (b-lg) is a globular protein belonging to the lipocalin family. It is the major whey protein in the milk of ruminants. It is also present in the milk of most mammals but is lacking in rodents, lagomorphs and humans. A large number of variants have been reported for cow and sheep milk. Several studies have shown association between b-lg variants and milk production and composition, even if the results are not always concordant. In goat, no b-lg variants related with amino acid change have been characterized at DNA level, but some authors described the presence of polymorphisms in the 3’UTR and in the proximal promoter region. Mutations in the promoter region could be those…

Geneticsfood and beveragesPromoterBiologyBreedgenomic DNAchemistry.chemical_compoundSettore AGR/17 - Zootecnica Generale E Miglioramento GeneticochemistryGene expressionbiology.proteinBeta-lactoglobulin polymorphisms Girgentana goat breedAnimal Science and Zoologylcsh:Animal cultureSheep milkGeneBeta-lactoglobulinDNAlcsh:SF1-1100
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A new system for animal products traceability and authentication: Use of DNA analysis of natural tracers and example of application to dry cured hams

2010

A few DNA based approaches have been developed to trace animal products from the farm to the consumer “fork”. These approaches make use of the animal DNA that can be recovered during all steps of t...

AuthenticationTraceabilitybusiness.industryDRY CURED HAMSfungiMICROSATELLITESfood and beveragesBiologyBiotechnologychemistry.chemical_compoundchemistryDNA ANALYSISTRACEABILITYAnimal Science and ZoologyBiochemical engineeringlcsh:Animal culturebusinessDry curedDNAlcsh:SF1-1100AUTHENTICATION
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Polymorphisms of beta-lactoglobulin promoter region in three Sicilian goat breeds

2012

Several beta-lactoglobulin (BLG) polymorphisms have been described within the proximal promoter region and coding region of the caprine gene, although no genetic variants affecting the protein amino acid composition and/or expression level have been characterized so far. Binding sites for several transcription factors (TFs) are present in the BLG promoter region. The aims of this work were to sequence the full-length promoter region of three Sicilian goat breeds in order to identify polymorphisms, analyze the identified haplotypes, search for differences between breeds for the presence of polymorphisms in this gene region, search for putative TFs binding sites, and check if polymorphisms la…

SICILIAN GOATMolecular Sequence DataSNPSingle-nucleotide polymorphismLactoglobulinsBiologyPolymerase Chain ReactionPolymorphism Single NucleotideSettore AGR/17 - Zootecnica Generale E Miglioramento GeneticoSpecies SpecificityBETA LACTOGLOBULIN GENEGene expressionGeneticsAnimalsCluster AnalysisCoding regionBinding sitePromoter Regions GeneticSicilyMolecular BiologyGeneTranscription factorGeneticsBase SequenceModels GeneticGoatsHaplotypeGenetic VariationPromoterSequence Analysis DNAGeneral MedicineMilk ProteinsMolecular biologyNFI Transcription FactorsTRANSCRIPTION FACTORSBeta-lactoglobulin Polymorphisms Promoter Sicilian goatsHAPLOTYPES
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Copy Number Variation and Missense Mutations of the Agouti Signaling Protein (<i>ASIP)</i> Gene in Goat Breeds with Different Coat Colors

2009

In goats, classical genetic studies reported a large number of alleles at the <i>Agouti</i> locus with effects on coat color and pattern distribution. From these early studies, the dominant <i>A</i><sup>Wt</sup> (white/tan) allele was suggested to cause the white color of the Saanen breed. Here, we sequenced the coding region of the goat <i>ASIP</i> 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-ri…

GeneticsCoatdigestive oral and skin physiologySingle-nucleotide polymorphismLocus (genetics)BiologyGenotypeGeneticsMissense mutationCopy-number variationAlleleMolecular BiologyGeneGenetics (clinical)Cytogenetic and Genome Research
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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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