生物
基因组
基因组学
比较基因组学
遗传学
多倍体
倍性
染色体
选择(遗传算法)
人口
计算生物学
进化生物学
鉴定(生物学)
单倍型
同步
基因
遗传力
标记辅助选择
基因库
细菌人工染色体
作者
Yumin Huang,Yixing Zhang,Qing Zhang,Gui Hua Zhuang,Chunjia Li,Baiyu Wang,Ruiting Gao,Yi Xu,Yiying Qi,Xiuting Hua,Huihong Shi,Q. J. Xu,Wei Yao,Xinlong Liu,Yongwen Qi,Baoshan Chen,Muqing Zhang,Ray Ming,Haibao Tang,Jisen Zhang
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-02-05
卷期号:391 (6785): eadx1616-eadx1616
被引量:29
标识
DOI:10.1126/science.adx1616
摘要
The sugarcane genus Saccharum is characterized by complex genomes with diverse ploidy levels. We developed a multiscale graph–based pangenome representation, which integrates nine genome assemblies into a unified reference, representing modern cultivars and founding species. Each homo(eo)logous (encompasses both homologous and homeologous relationships) chromosome set retains 47 to 57 haplotypes and ~74,000 to 271,000 gene alleles. This framework enables multiomics exploration, encompassing homo(eo)log systems and epigenomic signatures. The pangenome facilitates population genomics analyses of 417 mixed-ploidy Saccharum accessions, revealing convergent selection and identifying the Andropogoneae TB1 homolog linked to tillering as a promising gene-editing target to boost cane yield. Additionally, the pangenome supports dosage-informed genome-wide association study, improving heritability estimates and identification of sugar or leaf-angle–associated loci, including SaIRX10 and SaBAK5 . Our analytical framework establishes a foundation for graph-based genetic studies in sugarcane and other polyploid genomes.
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