AcPI and AcAP3 coordinately regulate sepal-petal formation in pineapple

萼片 花瓣 生物 细胞生物学 生态学 雄蕊 花粉
作者
Jing Wu,Wei Zhang,Yajun Wu,Jingyao Xie,Tao Xie,Yi Wen,Ziqin Zhong,Yan Leng,Junhu He,Ze Peng,Chengjie Chen,Yehua He,Aiping Luan
出处
期刊:Horticultural Plant Journal [KeAi]
被引量:1
标识
DOI:10.1016/j.hpj.2025.03.014
摘要

Sepals and petals form the peels of pineapple fruits, which influence the size of cavities below the surface of the fruits (so-called “fruit eye”) and subsequently the fruit quality and edible rate. In this study, to investigate the underlying mechanisms controlling septal-petal formation in pineapple, we utilized a mutant of variety ‘Yulinglong’ with petaloid sepals for comparative analyses with the wild type. Phenotypic and microscopic observations confirmed the either partially or completely petalized structure of the sepals of the mutant. Comparative gene expression analysis identified two MADS-box family members AcPI and AcAP3 that are potentially associated with the petaloid sepals. Heterologous overexpression experiments in Arabidopsis and tobacco validated their functions in controlling the identity and organogenesis of sepals/petals, as well as confirmed their role in transforming sepals to petals. Protein-protein interaction experiments and gene expression profiling suggested that AcPI and AcAP3 may coordinately determine floral organogenesis in pineapple flower bud primordia differentiation. The results provide important insights into the molecular regulation of floral organ identity and peel structure formation in pineapple, which may be harnessed to improve fruit quality and edible rate for pineapple.
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