3 research outputs found

    Rates of change in inbreeding, molecular homozygosity, coancestry and molecular similarity per year (Δ<i>F</i><sub>(y)</sub>, Δ<i>H</i><sub>(y)</sub>, Δ<i>f</i><sub>(y)</sub> and Δ<i>S</i><sub>(y)</sub>), respectively, and per generation (Δ<i>F</i>, Δ<i>H</i>, Δ<i>f</i> and Δ<i>S</i>) using different sources of information, and estimates of effective population sizes obtained from Δ<i>F</i> (<i>N<sub>e</sub></i><sub><i>F</i></sub>), Δ<i>H</i> (<i>N<sub>e</sub></i><sub><i>H</i></sub>), Δ<i>f</i> (<i>N<sub>e</sub></i><sub><i>f</i></sub>) and from Δ<i>S</i> (<i>N<sub>e</sub></i><sub><i>S</i></sub>).

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    <p>Rates of change in inbreeding, molecular homozygosity, coancestry and molecular similarity per year (Δ<i>F</i><sub>(y)</sub>, Δ<i>H</i><sub>(y)</sub>, Δ<i>f</i><sub>(y)</sub> and Δ<i>S</i><sub>(y)</sub>), respectively, and per generation (Δ<i>F</i>, Δ<i>H</i>, Δ<i>f</i> and Δ<i>S</i>) using different sources of information, and estimates of effective population sizes obtained from Δ<i>F</i> (<i>N<sub>e</sub></i><sub><i>F</i></sub>), Δ<i>H</i> (<i>N<sub>e</sub></i><sub><i>H</i></sub>), Δ<i>f</i> (<i>N<sub>e</sub></i><sub><i>f</i></sub>) and from Δ<i>S</i> (<i>N<sub>e</sub></i><sub><i>S</i></sub>).</p

    Intercept (<i>a</i>), regression coefficient (<i>b</i>) and correlation (<i>R</i>) between different estimates.

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    <p><i>F</i><sub><i>PED</i></sub>: pedigree-based inbreeding; <i>F</i><sub><i>ROH</i></sub>: inbreeding based on ROHs; <i>H</i><sub><i>SNP</i></sub>: SNP-by-SNP based homozygosity; <i>f</i><sub><i>PED</i></sub>: pedigree-based coancestry; <i>f</i><sub><i>SEG</i></sub>: coancestry based on IBD segments; <i>S</i><sub><i>SNP</i></sub>: SNP-by-SNP based similarity</p><p>Intercept (<i>a</i>), regression coefficient (<i>b</i>) and correlation (<i>R</i>) between different estimates.</p
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