Crop wild relative populations of Beta vulgaris allow direct mapping of agronomically important genes
Variation among wild relatives of crop plants can be used to identify genes underlying traits of agronomic importance. Here, the authors show that a modified mapping-by-sequencing approach can rapidly identify the genetic basis for viral resistance in sugar beet using wild beet populations in their...
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2017
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oai:doaj.org-article:fdb843c77bcb49acb902dd857c3240d02021-12-02T14:40:36ZCrop wild relative populations of Beta vulgaris allow direct mapping of agronomically important genes10.1038/ncomms157082041-1723https://doaj.org/article/fdb843c77bcb49acb902dd857c3240d02017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15708https://doaj.org/toc/2041-1723Variation among wild relatives of crop plants can be used to identify genes underlying traits of agronomic importance. Here, the authors show that a modified mapping-by-sequencing approach can rapidly identify the genetic basis for viral resistance in sugar beet using wild beet populations in their natural habitat.Gina G. Capistrano-GossmannD. RiesD. HoltgräweA. MinocheT. KraftS.L.M. FrerichmannT. Rosleff SoerensenJ. C. DohmI. GonzálezM. SchilhabelM. VarrelmannH. TschoepH. UphoffK. SchützeD. BorchardtO. ToerjekW. MechelkeJ. C. LeinA. W. SchechertL. FreseH. HimmelbauerB. WeisshaarF. J. Kopisch-ObuchNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-8 (2017) |
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Science Q Gina G. Capistrano-Gossmann D. Ries D. Holtgräwe A. Minoche T. Kraft S.L.M. Frerichmann T. Rosleff Soerensen J. C. Dohm I. González M. Schilhabel M. Varrelmann H. Tschoep H. Uphoff K. Schütze D. Borchardt O. Toerjek W. Mechelke J. C. Lein A. W. Schechert L. Frese H. Himmelbauer B. Weisshaar F. J. Kopisch-Obuch Crop wild relative populations of Beta vulgaris allow direct mapping of agronomically important genes |
description |
Variation among wild relatives of crop plants can be used to identify genes underlying traits of agronomic importance. Here, the authors show that a modified mapping-by-sequencing approach can rapidly identify the genetic basis for viral resistance in sugar beet using wild beet populations in their natural habitat. |
format |
article |
author |
Gina G. Capistrano-Gossmann D. Ries D. Holtgräwe A. Minoche T. Kraft S.L.M. Frerichmann T. Rosleff Soerensen J. C. Dohm I. González M. Schilhabel M. Varrelmann H. Tschoep H. Uphoff K. Schütze D. Borchardt O. Toerjek W. Mechelke J. C. Lein A. W. Schechert L. Frese H. Himmelbauer B. Weisshaar F. J. Kopisch-Obuch |
author_facet |
Gina G. Capistrano-Gossmann D. Ries D. Holtgräwe A. Minoche T. Kraft S.L.M. Frerichmann T. Rosleff Soerensen J. C. Dohm I. González M. Schilhabel M. Varrelmann H. Tschoep H. Uphoff K. Schütze D. Borchardt O. Toerjek W. Mechelke J. C. Lein A. W. Schechert L. Frese H. Himmelbauer B. Weisshaar F. J. Kopisch-Obuch |
author_sort |
Gina G. Capistrano-Gossmann |
title |
Crop wild relative populations of Beta vulgaris allow direct mapping of agronomically important genes |
title_short |
Crop wild relative populations of Beta vulgaris allow direct mapping of agronomically important genes |
title_full |
Crop wild relative populations of Beta vulgaris allow direct mapping of agronomically important genes |
title_fullStr |
Crop wild relative populations of Beta vulgaris allow direct mapping of agronomically important genes |
title_full_unstemmed |
Crop wild relative populations of Beta vulgaris allow direct mapping of agronomically important genes |
title_sort |
crop wild relative populations of beta vulgaris allow direct mapping of agronomically important genes |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/fdb843c77bcb49acb902dd857c3240d0 |
work_keys_str_mv |
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