Chromosome evolution and the genetic basis of agronomically important traits in greater yam
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Published:2022-04-14
Issue:1
Volume:13
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Bredeson Jessen V.ORCID, Lyons Jessica B.ORCID, Oniyinde Ibukun O., Okereke Nneka R., Kolade Olufisayo, Nnabue Ikenna, Nwadili Christian O., Hřibová Eva, Parker Matthew, Nwogha Jeremiah, Shu ShengqiangORCID, Carlson Joseph, Kariba Robert, Muthemba SamuelORCID, Knop Katarzyna, Barton Geoffrey J.ORCID, Sherwood Anna V.ORCID, Lopez-Montes Antonio, Asiedu RobertORCID, Jamnadass Ramni, Muchugi Alice, Goodstein DavidORCID, Egesi Chiedozie N., Featherston Jonathan, Asfaw AsratORCID, Simpson Gordon G., Doležel JaroslavORCID, Hendre Prasad S.ORCID, Van Deynze AllenORCID, Kumar Pullikanti Lava, Obidiegwu Jude E.ORCID, Bhattacharjee RanjanaORCID, Rokhsar Daniel S.ORCID
Abstract
AbstractThe nutrient-rich tubers of the greater yam, Dioscorea alata L., provide food and income security for millions of people around the world. Despite its global importance, however, greater yam remains an orphan crop. Here, we address this resource gap by presenting a highly contiguous chromosome-scale genome assembly of D. alata combined with a dense genetic map derived from African breeding populations. The genome sequence reveals an ancient allotetraploidization in the Dioscorea lineage, followed by extensive genome-wide reorganization. Using the genomic tools, we find quantitative trait loci for resistance to anthracnose, a damaging fungal pathogen of yam, and several tuber quality traits. Genomic analysis of breeding lines reveals both extensive inbreeding as well as regions of extensive heterozygosity that may represent interspecific introgression during domestication. These tools and insights will enable yam breeders to unlock the potential of this staple crop and take full advantage of its adaptability to varied environments.
Funder
RCUK | Biotechnology and Biological Sciences Research Council National Science Foundation
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary
Reference156 articles.
1. Mignouna, H. D., Abang, M. M. & Asiedu, R. In Genomics of Tropical Crop Plants (eds. Moore, P. H. & Ming, R.) 549–570 (Springer New York, 2008). 2. Lebot, V. Tropical Root and Tuber Crops, 2nd edn. (CABI, 2019). 3. Coursey, D. G. Yams. An account of the nature, origins, cultivation and utilisation of the useful members of the Dioscoreaceae (Longmans, Green and Co. Ltd, London, 1968). 4. Zannou, A. et al. Yam and cowpea diversity management by farmers in the Guinea-Sudan transition zone of Benin. NJAS Wagening. J. Life Sci. 52, 393–420 (2004). 5. Obidiegwu, J. E. & Akpabio, E. M. The geography of yam cultivation in southern Nigeria: exploring its social meanings and cultural functions. J. Ethn. Foods 4, 28–35 (2017).
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