A number of methods are available to scan a genome for selection signatures by evaluating patterns of diversity within and between breeds. Among these, "extended haplotype homozygosity" (EHH) is a reliable approach to detect genome regions under recent selective pressure. The objective of this study was to use this approach to identify regions that are under recent positive selection and shared by the most representative Italian dairy and beef cattle breeds
peer-reviewedBackground Artificial selection for economically important traits in c...
As the methodologies available for the detection of positive selection from genomic data vary in ter...
Selective signatures in whole genome can help us understand the mechanisms of selection and target c...
A number of methods are available to scan a genome for selection signatures by evaluating patterns o...
Background: 'Selection signatures' delimit regions of the genome that are, or have been, functionall...
The data from the newly available 50 K SNP chip was used for tagging the genome-wide footprints of p...
Summary The data from the newly available 50 K SNP chip was used for tagging the genome-wide footpri...
Artificial selection has greatly improved the beef production performance and changed its genetic ba...
Background: Since the times of domestication, cattle have been continually shaped by the influence o...
Selective signatures in whole genome can help us understand the mechanisms of selection and target c...
International audienceAbstractBackgroundThe identification of signals left by recent positive select...
Runs of homozygosity (ROH) are widely used as predictors of whole-genome inbreeding levels in cattle...
A number of cattle breeds have become highly specialized for milk or beef production, following stro...
In this study we used a medium density panel of SNP markers to perform population genetic analysis i...
<div><p>As the methodologies available for the detection of positive selection from genomic data var...
peer-reviewedBackground Artificial selection for economically important traits in c...
As the methodologies available for the detection of positive selection from genomic data vary in ter...
Selective signatures in whole genome can help us understand the mechanisms of selection and target c...
A number of methods are available to scan a genome for selection signatures by evaluating patterns o...
Background: 'Selection signatures' delimit regions of the genome that are, or have been, functionall...
The data from the newly available 50 K SNP chip was used for tagging the genome-wide footprints of p...
Summary The data from the newly available 50 K SNP chip was used for tagging the genome-wide footpri...
Artificial selection has greatly improved the beef production performance and changed its genetic ba...
Background: Since the times of domestication, cattle have been continually shaped by the influence o...
Selective signatures in whole genome can help us understand the mechanisms of selection and target c...
International audienceAbstractBackgroundThe identification of signals left by recent positive select...
Runs of homozygosity (ROH) are widely used as predictors of whole-genome inbreeding levels in cattle...
A number of cattle breeds have become highly specialized for milk or beef production, following stro...
In this study we used a medium density panel of SNP markers to perform population genetic analysis i...
<div><p>As the methodologies available for the detection of positive selection from genomic data var...
peer-reviewedBackground Artificial selection for economically important traits in c...
As the methodologies available for the detection of positive selection from genomic data vary in ter...
Selective signatures in whole genome can help us understand the mechanisms of selection and target c...