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A reference genome for pea provides insight into legume genome evolution
J. Kreplak, MA. Madoui, P. Cápal, P. Novák, K. Labadie, G. Aubert, PE. Bayer, KK. Gali, RA. Syme, D. Main, A. Klein, A. Bérard, I. Vrbová, C. Fournier, L. d'Agata, C. Belser, W. Berrabah, H. Toegelová, Z. Milec, J. Vrána, H. Lee, A. Kougbeadjo,...
Jazyk angličtina Země Spojené státy americké
Typ dokumentu časopisecké články, práce podpořená grantem
NLK
ProQuest Central
od 2000-01-01 do Před 1 rokem
Health & Medicine (ProQuest)
od 2000-01-01 do Před 1 rokem
Public Health Database (ProQuest)
od 2000-01-01 do Před 1 rokem
- MeSH
- chromozomy rostlin genetika MeSH
- Fabaceae klasifikace genetika MeSH
- fenotyp MeSH
- fylogeneze MeSH
- genetická variace MeSH
- genom rostlinný * MeSH
- genomika MeSH
- hrách setý genetika MeSH
- lokus kvantitativního znaku * MeSH
- mapování chromozomů MeSH
- molekulární evoluce * MeSH
- referenční standardy MeSH
- regulace genové exprese u rostlin MeSH
- repetitivní sekvence nukleových kyselin MeSH
- rostlinné proteiny genetika MeSH
- sekvenování celého genomu MeSH
- zásobní proteiny semen genetika MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
We report the first annotated chromosome-level reference genome assembly for pea, Gregor Mendel's original genetic model. Phylogenetics and paleogenomics show genomic rearrangements across legumes and suggest a major role for repetitive elements in pea genome evolution. Compared to other sequenced Leguminosae genomes, the pea genome shows intense gene dynamics, most likely associated with genome size expansion when the Fabeae diverged from its sister tribes. During Pisum evolution, translocation and transposition differentially occurred across lineages. This reference sequence will accelerate our understanding of the molecular basis of agronomically important traits and support crop improvement.
Biology Centre Czech Academy of Sciences České Budějovice Czech Republic
Centre for Crop and Disease Management Curtin University Bentley Western Australia Australia
Department of Horticulture Washington State University Pullman WA USA
Etude du Polymorphisme des Génomes Végétaux INRA Université Paris Saclay Evry France
Genoscope Institut François Jacob CEA Université Paris Saclay Evry France
School of Biological Sciences University of Auckland Auckland New Zealand
Citace poskytuje Crossref.org
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- $a Kreplak, Jonathan $u Agroécologie, AgroSup Dijon, INRA, Université Bourgogne Franche-Comté Bourgogne, Université Bourgogne Franche-Comté, Dijon, France.
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- $a A reference genome for pea provides insight into legume genome evolution / $c J. Kreplak, MA. Madoui, P. Cápal, P. Novák, K. Labadie, G. Aubert, PE. Bayer, KK. Gali, RA. Syme, D. Main, A. Klein, A. Bérard, I. Vrbová, C. Fournier, L. d'Agata, C. Belser, W. Berrabah, H. Toegelová, Z. Milec, J. Vrána, H. Lee, A. Kougbeadjo, M. Térézol, C. Huneau, CJ. Turo, N. Mohellibi, P. Neumann, M. Falque, K. Gallardo, R. McGee, B. Tar'an, A. Bendahmane, JM. Aury, J. Batley, MC. Le Paslier, N. Ellis, TD. Warkentin, CJ. Coyne, J. Salse, D. Edwards, J. Lichtenzveig, J. Macas, J. Doležel, P. Wincker, J. Burstin,
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- $a We report the first annotated chromosome-level reference genome assembly for pea, Gregor Mendel's original genetic model. Phylogenetics and paleogenomics show genomic rearrangements across legumes and suggest a major role for repetitive elements in pea genome evolution. Compared to other sequenced Leguminosae genomes, the pea genome shows intense gene dynamics, most likely associated with genome size expansion when the Fabeae diverged from its sister tribes. During Pisum evolution, translocation and transposition differentially occurred across lineages. This reference sequence will accelerate our understanding of the molecular basis of agronomically important traits and support crop improvement.
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