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甜菜品系FC309的全阶段染色体水平基因组有助于发现抗镰刀菌黄化病的数量性状基因座。

A fully phased, chromosome-scale genome of sugar beet line FC309 enables the discovery of Fusarium yellows resistance QTL.

作者信息

Todd Olivia E, Simpson Sheron, Scheffler Brian, Dorn Kevin M

机构信息

USDA-ARS, Soil Management and Sugar Beet Research Unit, Fort Collins, CO 80525, USA.

USDA-ARS, Genomics and Bioinformatics Research Unit, Stoneville, MS 38776, USA.

出版信息

DNA Res. 2024 Dec 27;32(1). doi: 10.1093/dnares/dsae032.

Abstract

Sugar beet (Beta vulgaris L.) is a global source of table sugar and animal fodder. Here we report a highly contiguous, haplotype phased genome assembly and annotation for sugar beet line FC309. Both assembled haplomes for FC309 represent the largest and most contiguous assembled beet genomes reported to date, as well as gene annotations sets that capture over 1,500 additional protein-coding loci compared to prior beet genome annotations. These new genomic resources were used to identify novel quantitative trait loci (QTL) for Fusarium yellows resistance from the FC309 genetic background using an F2 mapping-by-sequencing approach. The highest QTL signals were detected on Chromosome 3, spanning approximately 10Mbp in both haplomes. A parallel transcriptome profiling experiment identified candidate genes within the Chromosome 3 QTL with plausible roles in disease response, including NBS-LRR genes with expression trends supporting a role in resistance. Investigation of genetic variants in these candidate genes found 1 major disease-resistance protein containing high-effect variants of interest. Collectively, the genomic resources for FC309 presented here are foundational tools for comparative genomics, mapping other traits in the FC309 background, and as a reference genome for other beet studies due to its contiguity, completeness, and high-quality gene annotations.

摘要

甜菜(Beta vulgaris L.)是全球食糖和动物饲料的来源。在此,我们报告了甜菜品系FC309的高度连续、单倍型定相的基因组组装和注释。FC309的两个组装单倍型代表了迄今为止报道的最大且最连续的甜菜基因组,以及与先前甜菜基因组注释相比捕获了超过1500个额外蛋白质编码基因座的基因注释集。这些新的基因组资源被用于通过F2测序定位方法从FC309遗传背景中鉴定抗镰刀菌黄化病的新数量性状基因座(QTL)。在3号染色体上检测到最高的QTL信号,两个单倍型中该区域跨度约为10Mbp。一项平行的转录组分析实验在3号染色体QTL内鉴定出了在疾病反应中可能起作用的候选基因,包括表达趋势支持其在抗性中起作用的NBS-LRR基因。对这些候选基因中的遗传变异进行研究发现了1个含有感兴趣的高效变异的主要抗病蛋白。总体而言,本文展示的FC309基因组资源是比较基因组学的基础工具,可用于在FC309背景中定位其他性状,并且由于其连续性、完整性和高质量的基因注释,可作为其他甜菜研究的参考基因组。

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