Meng Juan, Li Ziwei, Wang Haoning, Miao Runtian, Liu Xu, Miao Dapeng, Zhao Chunxu, Wang Guijia, Cheng Tangren, Zhang Qixiang, Sun Lidan
State Key Laboratory of Efficient Production of Forest Resources, Beijing Key Laboratory of Ornamental Plants Germplasm Innovation and Molecular Breeding, National Engineering Research Center for Floriculture, Beijing Laboratory of Urban and Rural Ecological Environment, School of Landscape Architecture, Beijing Forestry University, Beijing, China.
Plant Biotechnol J. 2025 May;23(5):1416-1436. doi: 10.1111/pbi.14595. Epub 2025 Feb 3.
Prunus mume, an important ornamental woody plant in the Rosaceae family, contains many interspecific hybridizations. Purple colour is a breeding trait of aesthetic value for P. mume, but little is known about the origin and genetic architecture of this trait. Here we address these issues by producing a haplotype-resolved genome from an interspecific hybrid cultivar of P. mume (M) and P. cerasifera 'Pissardii' (C), named P. mume 'Meiren', followed by a detailed molecular characterization. The final length of the diploid genome is 499.47 Mb, with 250.66 Mb of haplotype M (HM) and 248.79 Mb of haplotype C (HC). Approximately 95.42% (476.61 Mb) of the phased assembly is further anchored to 16 homologous chromosomes. Based on the genomic variation, we identify a 1.8 Mb large-fragmented inversion (INV) on chromosome 1b of HC, which co-segregates with purple colour traits of 'Meiren' inherited from its purple C parent 'Pissardii'. We find that a MYB transcription factor, PmmMYB10.5b, resides at the distal breakpoint of the INV, which displays consistent allele-specific expression (ASE). By directly binding to the promoter of anthocyanin synthetic alleles, PmmMYB10.5b serves as a co-activator to promote anthocyanin accumulation in 'Meiren' organs. Notably, the INV identified in 'Meiren' is generated from 'Pissardii' rather than P. cerasifera, which alters the promoter sequence of PmmMYB10.5b, activates its expression and results in the purple colour trait. Results from this study shed light on the evolutionary origin of purple colour in 'Meiren' and could potentially provide guidance on the genetic improvement of colour traits in ornamental woody plants.
梅花是蔷薇科一种重要的观赏木本植物,存在许多种间杂交情况。紫色是梅花具有美学价值的一个育种性状,但关于该性状的起源和遗传结构知之甚少。在此,我们通过从梅花(M)和紫叶李‘Pissardii’(C)的种间杂交品种‘美人梅’中生成一个单倍型解析基因组来解决这些问题,随后进行详细的分子特征分析。二倍体基因组的最终长度为499.47 Mb,其中单倍型M(HM)为250.66 Mb,单倍型C(HC)为248.79 Mb。大约95.42%(476.61 Mb)的分阶段组装序列进一步锚定到16条同源染色体上。基于基因组变异,我们在HC的1b染色体上鉴定出一个1.8 Mb的大片段倒位(INV),它与‘美人梅’从其紫色C亲本‘Pissardii’遗传而来的紫色性状共分离。我们发现一个MYB转录因子PmmMYB10.5b位于INV的远端断点处,表现出一致的等位基因特异性表达(ASE)。通过直接结合花青素合成等位基因的启动子,PmmMYB10.5b作为共激活因子促进花青素在‘美人梅’器官中的积累。值得注意的是,在‘美人梅’中鉴定出的INV来自‘Pissardii’而非普通紫叶李,它改变了PmmMYB10.5b的启动子序列,激活其表达并导致了紫色性状。本研究结果揭示了‘美人梅’中紫色的进化起源,并可能为观赏木本植物颜色性状的遗传改良提供指导。