Genome sequence and analysis of the tuber crop potato
- Xun Xu,
- Shengkai Pan,
- Shifeng Cheng,
- Bo Zhang,
- Desheng Mu,
- Peixiang Ni
- BGI-Shenzhen,
- Universidad Peruana Cayetano Heredia,
- Universidad Nacional San Cristóbal de Huamanga,
- ,
- Central Potato Research Institute,
- Centre Bioengineering RAS
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Publication Information
Output type
Original language
EnglishPages from-to (Number of pages)
Pages 189-195 (7 pages)Journal (Volume, Issue Number)
Nature (Volume 475, Issue 7355)Publication milestones
- Published - 14/07/2011
Publication status
ISSN
0028-0836Publication IDs
- Scopus: 79960422847
- PubMed: 21743474
Abstract
Potato (Solanum tuberosum L.) is the world's most important non-grain food crop and is central to global food security. It is clonally propagated, highly heterozygous, autotetraploid, and suffers acute inbreeding depression. Here we use a homozygous doubled-monoploid potato clone to sequence and assemble 86% of the 844-megabase genome. We predict 39,031 protein-coding genes and present evidence for at least two genome duplication events indicative of a palaeopolyploid origin. As the first genome sequence of an asterid, the potato genome reveals 2,642 genes specific to this large angiosperm clade. We also sequenced a heterozygous diploid clone and show that gene presence/absence variants and other potentially deleterious mutations occur frequently and are a likely cause of inbreeding depression. Gene family expansion, tissue-specific expression and recruitment of genes to new pathways contributed to the evolution of tuber development. The potato genome sequence provides a platform for genetic improvement of this vital crop.
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