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  Chromosome-scale and haplotype-resolved genome assembly of a tetraploid potato cultivar

Sun, H., Jiao, W. B., Krause, K., Campoy, J. A., Goel, M., Folz-Donahue, K., et al. (2022). Chromosome-scale and haplotype-resolved genome assembly of a tetraploid potato cultivar. Nat Genet, 54(3), 342-348. doi:10.1038/s41588-022-01015-0.

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Sun, H., Author
Jiao, W. B., Author
Krause, K., Author
Campoy, J. A., Author
Goel, M., Author
Folz-Donahue, K.1, Author           
Kukat, C.1, Author           
Huettel, B., Author
Schneeberger, K., Author
Affiliations:
1FACS & Imaging, Core Facilities, Max Planck Institute for Biology of Ageing, Max Planck Society, ou_1942304              

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 Abstract: Potato is the most widely produced tuber crop worldwide. However, reconstructing the four haplotypes of its autotetraploid genome remained an unsolved challenge. Here, we report the 3.1 Gb haplotype-resolved (at 99.6% precision), chromosome-scale assembly of the potato cultivar 'Otava' based on high-quality long reads, single-cell sequencing of 717 pollen genomes and Hi-C data. Unexpectedly, ~50% of the genome was identical-by-descent due to recent inbreeding, which was contrasted by highly abundant structural rearrangements involving ~20% of the genome. Among 38,214 genes, only 54% were present in all four haplotypes with an average of 3.2 copies per gene. Taking the leaf transcriptome as an example, 11% of the genes were differently expressed in at least one haplotype, where 25% of them were likely regulated through allele-specific DNA methylation. Our work sheds light on the recent breeding history of potato, the functional organization of its tetraploid genome and has the potential to strengthen the future of genomics-assisted breeding.

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 Dates: 2022-03-032022-03-03
 Publication Status: Issued
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 Identifiers: Other: 35241824
DOI: 10.1038/s41588-022-01015-0
ISSN: 1546-1718 (Electronic)1061-4036 (Linking)
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Title: Nat Genet
Source Genre: Journal
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Pages: - Volume / Issue: 54 (3) Sequence Number: - Start / End Page: 342 - 348 Identifier: -