a<p>Mean of diagonal elements of genomic relationship matrix calculated using an allele frequency of 0.5.</p>b<p>Mean of diagonal elements of genomic relationship matrix calculated using true allele frequency in the base population.</p>c<p>Inbreeding based on pedigree information.</p
<p>Theoretical inbreeding coefficient (<i>F</i>) and corresponding number of homozygous pathogenic v...
International audienceWright’s inbreeding coefficient, F ST , is a fundamental measure in population...
A method is presented for the prediction of rate of inbreeding for populations with discrete generat...
The traditional quantitative genetics model was used as the unifying approach to derive six existing...
<div><p>The traditional quantitative genetics model was used as the unifying approach to derive six ...
Background Genomic relationship matrices are used to obtain genomic inbreeding coefficients. Howeve...
International audienceThis paper reviews and discusses what is known about the relationship between ...
There are several measures available to describe the genetic variability of populations. The average...
<p>The mean inbreeding coefficient (F) at each generation accumulated in closed populations of 20 pa...
Most methods for next-generation sequencing (NGS) data analyses incorporate information regarding al...
We tested the consequences of using alternative genomic relationship matrices to predict genomic bre...
<p>Inbreeding coefficient F<sub>IS</sub> for all sample locations per microsatellite locus.</p
<p>F-I, F-II, F-IV, F-V, F-IVb, F<sub>A</sub>-I, F<sub>A</sub>-II, F<sub>A</sub>-IV, F<sub>A</sub>-V...
<p>The three representative genomic methods for estimating inbreeding coefficient mostly had similar...
<p>Notice that inbreeding coefficients provide equivalent information than self-coancestries. Result...
<p>Theoretical inbreeding coefficient (<i>F</i>) and corresponding number of homozygous pathogenic v...
International audienceWright’s inbreeding coefficient, F ST , is a fundamental measure in population...
A method is presented for the prediction of rate of inbreeding for populations with discrete generat...
The traditional quantitative genetics model was used as the unifying approach to derive six existing...
<div><p>The traditional quantitative genetics model was used as the unifying approach to derive six ...
Background Genomic relationship matrices are used to obtain genomic inbreeding coefficients. Howeve...
International audienceThis paper reviews and discusses what is known about the relationship between ...
There are several measures available to describe the genetic variability of populations. The average...
<p>The mean inbreeding coefficient (F) at each generation accumulated in closed populations of 20 pa...
Most methods for next-generation sequencing (NGS) data analyses incorporate information regarding al...
We tested the consequences of using alternative genomic relationship matrices to predict genomic bre...
<p>Inbreeding coefficient F<sub>IS</sub> for all sample locations per microsatellite locus.</p
<p>F-I, F-II, F-IV, F-V, F-IVb, F<sub>A</sub>-I, F<sub>A</sub>-II, F<sub>A</sub>-IV, F<sub>A</sub>-V...
<p>The three representative genomic methods for estimating inbreeding coefficient mostly had similar...
<p>Notice that inbreeding coefficients provide equivalent information than self-coancestries. Result...
<p>Theoretical inbreeding coefficient (<i>F</i>) and corresponding number of homozygous pathogenic v...
International audienceWright’s inbreeding coefficient, F ST , is a fundamental measure in population...
A method is presented for the prediction of rate of inbreeding for populations with discrete generat...