Li Wei, Chu Chong, Zhang Taikui, Sun Haochen, Wang Shiyao, Liu Zeyuan, Wang Zijun, Li Hui, Li Yuqi, Zhang Xingtan, Geng Zhiqiang, Wang Youqing, Li Yi, Zhang Hengtao, Fan Weishu, Wang Yi, Xu Xuefeng, Cheng Lailiang, Zhang Dehui, Xiong Yao, Li Huixia, Zhou Bowen, Guan Qingmei, Deng Cecilia H, Han Yongming, Ma Hong, Han Zhenhai
Institute for Horticultural Plants, China Agricultural University, Beijing, China.
Department of Biomedical Informatics, Harvard Medical School, Boston, MA, USA.
Nat Genet. 2025 May;57(5):1274-1286. doi: 10.1038/s41588-025-02166-6. Epub 2025 Apr 16.
Malus Mill., a genus of temperate perennial trees with great agricultural and ecological value, has diversified through hybridization, polyploidy and environmental adaptation. Limited genomic resources for wild Malus species have hindered the understanding of their evolutionary history and genetic diversity. We sequenced and assembled 30 high-quality Malus genomes, representing 20 diploids and 10 polyploids across major evolutionary lineages and geographical regions. Phylogenomic analyses revealed ancient gene duplications and conversions, while six newly defined genome types, including an ancestral type shared by polyploid species, facilitated the detection of strong signals for extensive introgressions. The graph-based pan-genome captured shared and species-specific structural variations, facilitating the development of a molecular marker for apple scab resistance. Our pipeline for analyzing selective sweep identified a mutation in MdMYB5 having reduced cold and disease resistance during domestication. This study advances Malus genomics, uncovering genetic diversity and evolutionary insights while enhancing breeding for desirable traits.
苹果属(Malus Mill.)是一类具有重要农业和生态价值的温带多年生树木,通过杂交、多倍体化和环境适应实现了多样化。野生苹果属物种有限的基因组资源阻碍了我们对其进化历史和遗传多样性的理解。我们对30个高质量的苹果属基因组进行了测序和组装,这些基因组代表了主要进化谱系和地理区域的20个二倍体和10个多倍体。系统基因组学分析揭示了古老的基因重复和转换,而六种新定义的基因组类型,包括多倍体物种共享的祖先类型,有助于检测广泛渐渗的强烈信号。基于图的泛基因组捕获了共享和物种特异性的结构变异,有助于开发苹果黑星病抗性分子标记。我们分析选择性清除的流程确定了MdMYB5中的一个突变,该突变在驯化过程中降低了抗寒和抗病能力。这项研究推动了苹果属基因组学的发展,揭示了遗传多样性和进化见解,同时加强了优良性状的育种。