A special short-wing petal faba genome and genetic dissection of floral and yield-related traits accelerate breeding and improvement of faba bean

IF 10.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Genome Biology Pub Date : 2025-03-17 DOI:10.1186/s13059-025-03532-7
Rong Liu, Chaoqin Hu, Dan Gao, Mengwei Li, Xingxing Yuan, Liyang Chen, Qin Shu, Zonghe Wang, Xin Yang, Zhengming Dai, Haitian Yu, Feng Yang, Aiqing Zheng, Meiyuan Lv, Vanika Garg, Chengzhi Jiao, Hongyan Zhang, Wanwei Hou, Changcai Teng, Xianli Zhou, Chengzhang Du, Chao Xiang, Dongxu Xu, Yongsheng Tang, Annapurna Chitikineni, Yinmei Duan, Fouad Maalouf, Shiv Kumar Agrawal, Libin Wei, Na Zhao, Rutwik Barmukh, Xiang Li, Dong Wang, Hanfeng Ding, Yujiao Liu, Xin Chen, Rajeev K. Varshney, Yuhua He, Xuxiao Zong, Tao Yang
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Abstract

A comprehensive study of the genome and genetics of superior germplasms is fundamental for crop improvement. As a widely adapted protein crop with high yield potential, the improvement in breeding and development of the seeds industry of faba bean have been greatly hindered by its giant genome size and high outcrossing rate. To fully explore the genomic diversity and genetic basis of important agronomic traits, we first generate a de novo genome assembly and perform annotation of a special short-wing petal faba bean germplasm (VF8137) exhibiting a low outcrossing rate. Comparative genome and pan-genome analyses reveal the genome evolution characteristics and unique pan-genes among the three different faba bean genomes. In addition, the genome diversity of 558 accessions of faba bean germplasm reveals three distinct genetic groups and remarkable genetic differences between the southern and northern germplasms. Genome-wide association analysis identifies several candidate genes associated with adaptation- and yield-related traits. We also identify one candidate gene related to short-wing petals by combining quantitative trait locus mapping and bulked segregant analysis. We further elucidate its function through multiple lines of evidence from functional annotation, sequence variation, expression differences, and protein structure variation. Our study provides new insights into the genome evolution of Leguminosae and the genomic diversity of faba bean. It offers valuable genomic and genetic resources for breeding and improvement of faba bean.
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全面研究优良种质的基因组和遗传学是作物改良的基础。作为一种适应性广、产量潜力大的蛋白质作物,蚕豆的巨大基因组规模和高杂交率极大地阻碍了其育种改良和种子产业的发展。为了充分探索重要农艺性状的基因组多样性和遗传基础,我们首先对表现出低外交率的特殊短翅瓣蚕豆种质(VF8137)进行了全新的基因组组装和注释。基因组和泛基因组比较分析揭示了三种不同蚕豆基因组的基因组进化特征和独特的泛基因。此外,558 份蚕豆种质的基因组多样性揭示了三个不同的基因组,以及南方和北方种质之间显著的基因差异。全基因组关联分析发现了几个与适应性和产量相关性状有关的候选基因。我们还结合数量性状位点图谱和大量分离分析,确定了一个与短翅花瓣相关的候选基因。我们通过功能注释、序列变异、表达差异和蛋白质结构变异等多方面证据进一步阐明了该基因的功能。我们的研究为豆科植物的基因组进化和蚕豆的基因组多样性提供了新的见解。它为蚕豆的育种和改良提供了宝贵的基因组和遗传资源。
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来源期刊
Genome Biology
Genome Biology Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
21.00
自引率
3.30%
发文量
241
审稿时长
2 months
期刊介绍: Genome Biology stands as a premier platform for exceptional research across all domains of biology and biomedicine, explored through a genomic and post-genomic lens. With an impressive impact factor of 12.3 (2022),* the journal secures its position as the 3rd-ranked research journal in the Genetics and Heredity category and the 2nd-ranked research journal in the Biotechnology and Applied Microbiology category by Thomson Reuters. Notably, Genome Biology holds the distinction of being the highest-ranked open-access journal in this category. Our dedicated team of highly trained in-house Editors collaborates closely with our esteemed Editorial Board of international experts, ensuring the journal remains on the forefront of scientific advances and community standards. Regular engagement with researchers at conferences and institute visits underscores our commitment to staying abreast of the latest developments in the field.
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