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六个同源四倍体马铃薯基因组的组装。

Genome assembly of six polyploid potato genomes.

机构信息

Department of Plant Science, McGill University, 21111 Lakeshore Rd., Sainte-Anne-de-Bellevue, QC, H9X3V9, Canada.

CIP-International Potato Center, Avenida La Molina 1895, Lima, 12, Peru.

出版信息

Sci Data. 2020 Mar 11;7(1):88. doi: 10.1038/s41597-020-0428-4.

Abstract

Genome assembly of polyploid plant genomes is a laborious task as they contain more than two copies of the genome, are often highly heterozygous with a high level of repetitive DNA. Next Generation genome sequencing data representing one Chilean and five Peruvian polyploid potato (Solanum spp.) landrace genomes was used to construct genome assemblies comprising five taxa. Third Generation sequencing data (Linked and Long-read data) was used to improve the assembly for one of the genomes. Native landraces are valuable genetic resources for traits such as disease and pest resistance, environmental tolerance and other qualities of interest such as nutrition and fiber for breeding programs. The need for conservation and enhanced understanding of genetic diversity of cultivated potato from South America is also crucial to North American and European cultivars. Here, we report draft genomes from six polyploid potato landraces representing five taxa, illustrating how Third Generation Sequencing can aid in assembling polyploid genomes.

摘要

多倍体植物基因组的组装是一项艰巨的任务,因为它们包含两份以上的基因组,通常高度杂合,具有高水平的重复 DNA。使用代表智利和秘鲁的五个多倍体马铃薯(Solanum spp.)地方品种的新一代基因组测序数据来构建包含五个分类单元的基因组组装。第三代测序数据(链接和长读数据)用于改进其中一个基因组的组装。本地品种是具有疾病和害虫抗性、环境耐受性以及营养和纤维等其他感兴趣品质的宝贵遗传资源,可用于育种计划。保护和加强对南美洲栽培马铃薯遗传多样性的了解对于北美和欧洲品种也至关重要。在这里,我们报告了来自六个多倍体马铃薯地方品种的草案基因组,代表了五个分类单元,说明了第三代测序如何帮助组装多倍体基因组。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a790/7066127/76d43391159e/41597_2020_428_Fig1_HTML.jpg

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