Thagun Chonprakun, Kodama Yutaka
Center for Bioscience Research and Education (C-Bio), Utsunomiya University, 350 Mine-Machi, Utsunomiya, Tochigi, 321-8505, Japan.
Sci Rep. 2025 Jul 1;15(1):20392. doi: 10.1038/s41598-025-08344-0.
Unraveling gene function is crucial for enhancing quality traits in commercially cultivated strawberry (Fragaria × ananassa) through biotechnology. However, such analysis is hindered by the complexity of the octoploid genome (2n = 8x = 56) of F. × ananassa. In this study, we leveraged the ancestral wild strawberry species Fragaria vesca as an experimental model and developed an Agrobacterium tumefaciens-based leaf infiltration (agroinfiltration) technique to elucidate the functions of genes and regulatory sequences in strawberry. We transiently expressed genes encoding transcriptional regulators that govern floral organ development in F. vesca leaf cells, allowing us to investigate the underlying regulatory mechanisms through in planta gene expression and transactivation assays. Our agroinfiltration method serves as a practical tool for studying the activities of genes controlling economically important traits in strawberry.
通过生物技术揭示基因功能对于提高商业化种植草莓(凤梨草莓,Fragaria × ananassa)的品质性状至关重要。然而,这种分析受到凤梨草莓八倍体基因组(2n = 8x = 56)复杂性的阻碍。在本研究中,我们利用野生祖先草莓物种森林草莓(Fragaria vesca)作为实验模型,并开发了一种基于根癌农杆菌的叶片浸润(农杆菌浸润)技术,以阐明草莓中基因和调控序列的功能。我们在森林草莓叶细胞中瞬时表达了编码调控花器官发育的转录调节因子的基因,从而能够通过植物体内基因表达和反式激活分析来研究潜在的调控机制。我们的农杆菌浸润方法是研究控制草莓重要经济性状的基因活性的实用工具。