生物
渗入
系统发育树
植物
系统发育学
栽培
基因流
分类单元
遗传多样性
核苷酸多样性
叶绿体
毛果杨
属
叶绿体DNA
克莱德
基因组
遗传变异
植物遗传学
种间竞争
生物多样性
兰科
遗传变异
进化生物学
遗传距离
木本植物
作者
Die Liu,Sufang Chen,向嘉彬,Qi Liang,Yang Yi,Rui Zhang,谢集照,Shen Ding,Dangquan Zhang,Mingwan Li
标识
DOI:10.1016/j.indcrop.2026.123656
摘要
Species of the medicinal woody genus Hovenia Thunb. are valued for their seeds with hepatoprotective and anti-alcoholic intoxication properties. However, unclear phylogeny and uncharacterized bioactive component differences between wild species and cultivars hinder standardized development and quality control of this resource. In this study, we integrated morphological characteristics, chloroplast genomes, RAD SNPs, and HPLC-MS/MS fingerprinting to evaluate 14 populations representing three wild species, three cultivars of H. acerba , and one ancient H. dulcis tree. The chloroplast genomes (161,571–161,935 bp) were conserved with low nucleotide diversity ( Pi = 0.00176). Notably, H. trichocarpa lacked a functional rps19 copy at the IRa/LSC junction. RAD analysis assigned 14 populations into three species clusters and detected significant gene flow and introgression ( D = 0.0678–0.3093) between wild populations and cultivars (e.g., P8 vs. P10, f₄ -ratio = 0.0572), as well as among cultivars ( f₄ -ratio = 0.1561–0.5770). Phylogenetic trees derived from chloroplast and nuclear data showed minor discordances, indicating complex evolutionary histories involving hybridization. HPLC-MS/MS quantification of six flavonoids revealed significant interspecific differences. H. dulcis accumulated higher levels of dihydroquercetin and quercetin, whereas H. trichocarpa and H. acerba (including cultivars) were richer in dihydromyricetin and myricetin. Among cultivars, ‘Hongguaizao’ exhibited superior quality, ranking highest or second‑highest in five of the six flavonoids. Our multi‑technology approach clarified the genetic background of major Hovenia taxa and identified ‘Hongguaizao’ as a promising breeding candidate, providing a scientific basis for quality evaluation and resource utilization.
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