Zhao Yaoyao, Mao Wenwen, Chen Yating, Wang Wei, Dai Zhengrong, Dou Zhechao, Zhang Kai, Wei Lingzhi, Li Tianyu, Zeng Baozhen, Liu Ting, Fan Yijuan, Yan Jiaqi, Li Bingbing, Jia Wensuo
College of Horticulture, China Agriculture University, Beijing, CN 100193 P.R. China.
Hortic Res. 2019 May 1;6:53. doi: 10.1038/s41438-019-0135-5. eCollection 2019.
Strawberry is increasingly used as a model plant for research on fruit growth and development. The transient gene manipulation (TGM) technique is widely used to determine the function of plant genes, including those in strawberry fruits. However, its reliable application for the precise identification of gene function has been difficult owing to the lack of conditional optimization. In this study, we found that successful transient gene manipulation requires optimization, with the vector type, temperature, and fruit developmental stage being three major factors determining success. Notably, we found that transient gene manipulation was feasible only from the large green fruit stage onwards, making it especially suitable for identifying genes involved in strawberry fruit ripening. Furthermore, we established a method called percentage difference of phenotype (PDP), in which the functional effect of a gene could be precisely and efficiently identified in strawberry fruits. This method can be used to estimate the functional effect of a gene as a value from 0 to 100%, such that different genes can be quantitatively compared for their relative abilities to regulate fruit ripening. This study provides a useful tool for accelerating research on the molecular basis of strawberry fruit ripening.
草莓越来越多地被用作研究果实生长和发育的模式植物。瞬时基因操作(TGM)技术被广泛用于确定植物基因的功能,包括草莓果实中的基因。然而,由于缺乏条件优化,其在精确鉴定基因功能方面的可靠应用一直很困难。在本研究中,我们发现成功的瞬时基因操作需要优化,载体类型、温度和果实发育阶段是决定成功的三个主要因素。值得注意的是,我们发现瞬时基因操作仅从大绿果期开始才可行,这使其特别适合于鉴定参与草莓果实成熟的基因。此外,我们建立了一种称为表型差异百分比(PDP)的方法,通过该方法可以在草莓果实中精确、高效地鉴定基因的功能效应。该方法可将基因的功能效应估计为0到100%的值,从而可以对不同基因调节果实成熟的相对能力进行定量比较。本研究为加速草莓果实成熟分子基础的研究提供了一个有用的工具。