Huang Ting-Hsuan, Lu Yi-Chien, Chen Yu-Huan, Shen Rong-Show
Department of Horticultural Science, National Chiayi University, No. 300, Xuefu Rd., East Dist., Chiayi City 600355, Taiwan.
School of Life Science, National Taiwan Normal University, 88 Ting-Chow Rd., Sec. 4, Taipei 116, Taiwan.
Plants (Basel). 2024 Aug 15;13(16):2272. doi: 10.3390/plants13162272.
Periwinkle ( (L.) G. Don) is renowned for its diverse colors and resilience to harsh climates. Still, most commercial cultivars predominantly display flat petals. Using cultivars representing non-wavy, medium-wavy, and extreme-wavy flower forms, we examined morphological differences in both their mature leaves and floral organs. Phenotypes of self-pollinated (S) and cross-pollinated (F, F) populations further underscored their morphological distinctions. Specifically, the extreme-wavy type displayed elliptical leaves, broader than the non-wavy type, with a pronounced acute apex and a notably wrinkled blade surface. The non-wavy type also bore intensely wavy petal margins and exhibited a smaller flower diameter, with a notable absence of a functional pistil, indicating female sterility. The insights gained allowed for early differentiation during the seedling period. This study suggests that the inheritance of these flower forms is regulated by an allele (), which exhibits incomplete dominance. Concretely, the non-wavy form arises from a recessive homozygous expression (), the extreme-wavy from a dominant homozygous expression (), and the medium-wavy from a heterozygous expression (). This study provides clarity on morphological descriptions and inheritance patterns of wavy flower forms, facilitating strategic breeding of diverse flower forms in periwinkle.
长春花(Catharanthus roseus (L.) G. Don)以其多样的颜色和对恶劣气候的适应能力而闻名。然而,大多数商业栽培品种主要呈现扁平花瓣。我们使用代表非波浪形、中等波浪形和极端波浪形花型的品种,研究了它们成熟叶片和花器官的形态差异。自花授粉(S)和异花授粉(F₁、F₂)群体的表型进一步突出了它们的形态差异。具体而言,极端波浪形类型的叶片呈椭圆形,比非波浪形类型更宽,有明显的急尖,叶片表面明显褶皱。非波浪形类型的花瓣边缘也有强烈的波浪状,花直径较小,明显没有功能性雌蕊,表明雌性不育。这些发现有助于在苗期进行早期区分。本研究表明,这些花型的遗传受一个等位基因(W)调控,表现为不完全显性。具体来说,非波浪形花型由隐性纯合表达(ww)产生,极端波浪形由显性纯合表达(WW)产生,中等波浪形由杂合表达(Ww)产生。本研究明确了波浪形花型的形态描述和遗传模式,有助于长春花多种花型的策略性育种。