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The Soybean Genome Database (SoyGD): a browser for display of duplicated, polyploid, regions and sequence tagged sites on the integrated physical and genetic maps of Glycine max

Genomes that have been highly conserved following increases in ploidy (by duplication or hybridization) like Glycine max (soybean) present challenges during genome analysis. At the Soybean Genome Database (SoyGD) genome browser has, since 2002, integrated and served the publicly available soybean ph...

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Autores principales: Shultz, Jeffry L., Kurunam, Deepak, Shopinski, Kay, Iqbal, M. Javed, Kazi, Samreen, Zobrist, Kimberley, Bashir, Rabia, Yaegashi, Satsuki, Lavu, Nagajyothi, Afzal, Ahmed J., Yesudas, Charles R., Kassem, M. Abdelmajid, Wu, Chengcang, Zhang, Hong Bin, Town, Christopher D., Meksem, Khalid, Lightfoot, David A.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1347413/
https://www.ncbi.nlm.nih.gov/pubmed/16381975
http://dx.doi.org/10.1093/nar/gkj050
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author Shultz, Jeffry L.
Kurunam, Deepak
Shopinski, Kay
Iqbal, M. Javed
Kazi, Samreen
Zobrist, Kimberley
Bashir, Rabia
Yaegashi, Satsuki
Lavu, Nagajyothi
Afzal, Ahmed J.
Yesudas, Charles R.
Kassem, M. Abdelmajid
Wu, Chengcang
Zhang, Hong Bin
Town, Christopher D.
Meksem, Khalid
Lightfoot, David A.
author_facet Shultz, Jeffry L.
Kurunam, Deepak
Shopinski, Kay
Iqbal, M. Javed
Kazi, Samreen
Zobrist, Kimberley
Bashir, Rabia
Yaegashi, Satsuki
Lavu, Nagajyothi
Afzal, Ahmed J.
Yesudas, Charles R.
Kassem, M. Abdelmajid
Wu, Chengcang
Zhang, Hong Bin
Town, Christopher D.
Meksem, Khalid
Lightfoot, David A.
author_sort Shultz, Jeffry L.
collection PubMed
description Genomes that have been highly conserved following increases in ploidy (by duplication or hybridization) like Glycine max (soybean) present challenges during genome analysis. At the Soybean Genome Database (SoyGD) genome browser has, since 2002, integrated and served the publicly available soybean physical map, bacterial artificial chromosome (BAC) fingerprint database and genetic map associated genomic data. The browser shows both build 3 and build 4 contiguous sets of clones (contigs) of the soybean physical map. Build 4 consisted of 2854 contigs that encompassed 1.05 Gb and 404 high-quality DNA markers that anchored 742 contigs. Many DNA markers anchored sets of 2–8 different contigs. Each contig in the set represented a homologous region of related sequences. GBrowse was adapted to show sets of homologous contigs at all potential anchor points, spread laterally and prevented from overlapping. About 8064 minimum tiling path (MTP2) clones provided 13 473 BAC end sequences (BES) to decorate the physical map. Analyses of BES placed 2111 gene models, 40 marker anchors and 1053 new microsatellite markers on the map. Estimated sequence tag probes from 201 low-copy gene families located 613 paralogs. The genome browser portal showed each data type as a separate track. Tetraploid, octoploid, diploid and homologous regions are shown clearly in relation to an integrated genetic and physical map.
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spelling pubmed-13474132006-01-25 The Soybean Genome Database (SoyGD): a browser for display of duplicated, polyploid, regions and sequence tagged sites on the integrated physical and genetic maps of Glycine max Shultz, Jeffry L. Kurunam, Deepak Shopinski, Kay Iqbal, M. Javed Kazi, Samreen Zobrist, Kimberley Bashir, Rabia Yaegashi, Satsuki Lavu, Nagajyothi Afzal, Ahmed J. Yesudas, Charles R. Kassem, M. Abdelmajid Wu, Chengcang Zhang, Hong Bin Town, Christopher D. Meksem, Khalid Lightfoot, David A. Nucleic Acids Res Article Genomes that have been highly conserved following increases in ploidy (by duplication or hybridization) like Glycine max (soybean) present challenges during genome analysis. At the Soybean Genome Database (SoyGD) genome browser has, since 2002, integrated and served the publicly available soybean physical map, bacterial artificial chromosome (BAC) fingerprint database and genetic map associated genomic data. The browser shows both build 3 and build 4 contiguous sets of clones (contigs) of the soybean physical map. Build 4 consisted of 2854 contigs that encompassed 1.05 Gb and 404 high-quality DNA markers that anchored 742 contigs. Many DNA markers anchored sets of 2–8 different contigs. Each contig in the set represented a homologous region of related sequences. GBrowse was adapted to show sets of homologous contigs at all potential anchor points, spread laterally and prevented from overlapping. About 8064 minimum tiling path (MTP2) clones provided 13 473 BAC end sequences (BES) to decorate the physical map. Analyses of BES placed 2111 gene models, 40 marker anchors and 1053 new microsatellite markers on the map. Estimated sequence tag probes from 201 low-copy gene families located 613 paralogs. The genome browser portal showed each data type as a separate track. Tetraploid, octoploid, diploid and homologous regions are shown clearly in relation to an integrated genetic and physical map. Oxford University Press 2006-01-01 2005-12-28 /pmc/articles/PMC1347413/ /pubmed/16381975 http://dx.doi.org/10.1093/nar/gkj050 Text en © The Author 2006. Published by Oxford University Press. All rights reserved
spellingShingle Article
Shultz, Jeffry L.
Kurunam, Deepak
Shopinski, Kay
Iqbal, M. Javed
Kazi, Samreen
Zobrist, Kimberley
Bashir, Rabia
Yaegashi, Satsuki
Lavu, Nagajyothi
Afzal, Ahmed J.
Yesudas, Charles R.
Kassem, M. Abdelmajid
Wu, Chengcang
Zhang, Hong Bin
Town, Christopher D.
Meksem, Khalid
Lightfoot, David A.
The Soybean Genome Database (SoyGD): a browser for display of duplicated, polyploid, regions and sequence tagged sites on the integrated physical and genetic maps of Glycine max
title The Soybean Genome Database (SoyGD): a browser for display of duplicated, polyploid, regions and sequence tagged sites on the integrated physical and genetic maps of Glycine max
title_full The Soybean Genome Database (SoyGD): a browser for display of duplicated, polyploid, regions and sequence tagged sites on the integrated physical and genetic maps of Glycine max
title_fullStr The Soybean Genome Database (SoyGD): a browser for display of duplicated, polyploid, regions and sequence tagged sites on the integrated physical and genetic maps of Glycine max
title_full_unstemmed The Soybean Genome Database (SoyGD): a browser for display of duplicated, polyploid, regions and sequence tagged sites on the integrated physical and genetic maps of Glycine max
title_short The Soybean Genome Database (SoyGD): a browser for display of duplicated, polyploid, regions and sequence tagged sites on the integrated physical and genetic maps of Glycine max
title_sort soybean genome database (soygd): a browser for display of duplicated, polyploid, regions and sequence tagged sites on the integrated physical and genetic maps of glycine max
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1347413/
https://www.ncbi.nlm.nih.gov/pubmed/16381975
http://dx.doi.org/10.1093/nar/gkj050
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