Combined detection and introgression of QTL in outbred populations

<p>Abstract</p> <p>Background</p> <p>Detecting a QTL is only the first step in genetic improvement programs. When a QTL with desirable characteristics is found, e.g. in a wild or unimproved population, it may be interesting to introgress the detected QTL into the commer...

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Main Authors: Meuwissen Theodorus HE, Woolliams John A, Sonesson Anna K, Yazdi M Hossein
Format: Article
Language:deu
Published: BMC 2010-06-01
Series:Genetics Selection Evolution
Online Access:http://www.gsejournal.org/content/42/1/16
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spelling doaj-4169384cf89e473eb6b47660b5277b842020-11-25T00:33:43ZdeuBMCGenetics Selection Evolution0999-193X1297-96862010-06-014211610.1186/1297-9686-42-16Combined detection and introgression of QTL in outbred populationsMeuwissen Theodorus HEWoolliams John ASonesson Anna KYazdi M Hossein<p>Abstract</p> <p>Background</p> <p>Detecting a QTL is only the first step in genetic improvement programs. When a QTL with desirable characteristics is found, e.g. in a wild or unimproved population, it may be interesting to introgress the detected QTL into the commercial population. One approach to shorten the time needed for introgression is to combine both QTL identification and introgression, into a single step. This combines the strengths of fine mapping and backcrossing and paves the way for introgression of desirable but unknown QTL into recipient animal and plant lines.</p> <p>Methods</p> <p>The method consisting in combining QTL mapping and gene introgression has been extended from inbred to outbred populations in which QTL allele frequencies vary both in recipient and donor lines in different scenarios and for which polygenic effects are included in order to model background genes. The effectiveness of the combined QTL detection and introgression procedure was evaluated by simulation through four backcross generations.</p> <p>Results</p> <p>The allele substitution effect is underestimated when the favourable QTL allele is not fixed in the donor line. This underestimation is proportional to the frequency differences of the favourable QTL allele between the lines. In most scenarios, the estimates of the QTL location are unbiased and accurate. The retained donor chromosome segment and linkage drag are similar to expected values from other published studies.</p> <p>Conclusions</p> <p>In general, our results show that it is possible to combine QTL detection and introgression even in outbred species. Separating QTL mapping and introgression processes is often thought to be longer and more costly. However, using a combined process saves at least one generation. With respect to the linkage drag and obligatory drag, the results of the combined detection and introgression scheme are very similar to those of traditional introgression schemes.</p> http://www.gsejournal.org/content/42/1/16
collection DOAJ
language deu
format Article
sources DOAJ
author Meuwissen Theodorus HE
Woolliams John A
Sonesson Anna K
Yazdi M Hossein
spellingShingle Meuwissen Theodorus HE
Woolliams John A
Sonesson Anna K
Yazdi M Hossein
Combined detection and introgression of QTL in outbred populations
Genetics Selection Evolution
author_facet Meuwissen Theodorus HE
Woolliams John A
Sonesson Anna K
Yazdi M Hossein
author_sort Meuwissen Theodorus HE
title Combined detection and introgression of QTL in outbred populations
title_short Combined detection and introgression of QTL in outbred populations
title_full Combined detection and introgression of QTL in outbred populations
title_fullStr Combined detection and introgression of QTL in outbred populations
title_full_unstemmed Combined detection and introgression of QTL in outbred populations
title_sort combined detection and introgression of qtl in outbred populations
publisher BMC
series Genetics Selection Evolution
issn 0999-193X
1297-9686
publishDate 2010-06-01
description <p>Abstract</p> <p>Background</p> <p>Detecting a QTL is only the first step in genetic improvement programs. When a QTL with desirable characteristics is found, e.g. in a wild or unimproved population, it may be interesting to introgress the detected QTL into the commercial population. One approach to shorten the time needed for introgression is to combine both QTL identification and introgression, into a single step. This combines the strengths of fine mapping and backcrossing and paves the way for introgression of desirable but unknown QTL into recipient animal and plant lines.</p> <p>Methods</p> <p>The method consisting in combining QTL mapping and gene introgression has been extended from inbred to outbred populations in which QTL allele frequencies vary both in recipient and donor lines in different scenarios and for which polygenic effects are included in order to model background genes. The effectiveness of the combined QTL detection and introgression procedure was evaluated by simulation through four backcross generations.</p> <p>Results</p> <p>The allele substitution effect is underestimated when the favourable QTL allele is not fixed in the donor line. This underestimation is proportional to the frequency differences of the favourable QTL allele between the lines. In most scenarios, the estimates of the QTL location are unbiased and accurate. The retained donor chromosome segment and linkage drag are similar to expected values from other published studies.</p> <p>Conclusions</p> <p>In general, our results show that it is possible to combine QTL detection and introgression even in outbred species. Separating QTL mapping and introgression processes is often thought to be longer and more costly. However, using a combined process saves at least one generation. With respect to the linkage drag and obligatory drag, the results of the combined detection and introgression scheme are very similar to those of traditional introgression schemes.</p>
url http://www.gsejournal.org/content/42/1/16
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AT sonessonannak combineddetectionandintrogressionofqtlinoutbredpopulations
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