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藜麦多样性群体的基因组组装

Genome assembly of a diversity panel of Chenopodium quinoa.

作者信息

Rey Elodie, Abrouk Michael, Dufau Isabelle, Rodde Nathalie, Saber Noha, Cizkova Jana, Fiene Gabriele, Stanschewski Clara, Jarvis David E, Jellen Eric N, Maughan Peter J, von Baer Ingrid, Troukhan Maxim, Kravchuk Maksym, Hribova Eva, Cauet Stephane, Krattinger Simon G, Tester Mark

机构信息

Plant Science Program, Biological and Environmental Science and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955-6900, Saudi Arabia.

Center for Desert Agriculture, KAUST, Thuwal, Saudi Arabia.

出版信息

Sci Data. 2024 Dec 18;11(1):1366. doi: 10.1038/s41597-024-04200-4.

Abstract

Quinoa (Chenopodium quinoa) is an important crop for the future challenges of food and nutrient security. Deep characterization of quinoa diversity is needed to support the agronomic improvement and adaptation of quinoa as its worldwide cultivation expands. In this study, we report the construction of chromosome-scale genome assemblies of eight quinoa accessions covering the range of phenotypic and genetic diversity of both lowland and highland quinoas. The assemblies were produced from a combination of PacBio HiFi reads and Bionano Saphyr optical maps, with total assembly sizes averaging 1.28 Gb with a mean N50 of 71.1 Mb. Between 43,733 and 48,564 gene models were predicted for the eight new quinoa genomes, and on average, 66% of each quinoa genome was classified as repetitive sequences. Alignment between the eight genome assemblies allowed the identification of structural rearrangements including inversions, translocations, and duplications. These eight novel quinoa genome assemblies provide a resource for association genetics, comparative genomics, and pan-genome analyses for the discovery of genetic components and variations underlying agriculturally important traits.

摘要

藜麦(Chenopodium quinoa)是应对未来粮食和营养安全挑战的重要作物。随着藜麦在全球范围内的种植面积不断扩大,需要对其多样性进行深入表征,以支持藜麦的农艺改良和适应性研究。在本研究中,我们报告了八个藜麦种质的染色体水平基因组组装,这些种质涵盖了低地和高地藜麦的表型和遗传多样性范围。这些组装是由PacBio HiFi reads和Bionano Saphyr光学图谱组合产生的,组装总大小平均为1.28 Gb,平均N50为71.1 Mb。在八个新的藜麦基因组中预测了43,733至48,564个基因模型,平均每个藜麦基因组有66%被分类为重复序列。八个基因组组装之间的比对使得能够鉴定包括倒位、易位和重复在内的结构重排。这八个新的藜麦基因组组装为关联遗传学、比较基因组学和泛基因组分析提供了资源,用于发现农业重要性状潜在的遗传成分和变异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/300a/11655568/f31544c2ecfc/41597_2024_4200_Fig1_HTML.jpg

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