Laboratory of Fruit Cell and Molecular Breeding, China Agricultural University, Beijing, 100193, China.
Institute of Pomology, Liaoning Academy of Agricultural Sciences, Yingkou, 115009, China.
Plant Physiol Biochem. 2022 Mar 1;174:11-21. doi: 10.1016/j.plaphy.2022.01.029. Epub 2022 Jan 29.
Although a few apple (Malus × ×domestica) varieties are self-compatible, little is known about the differences in fruit quality between self- and cross-pollinated apple. In our current study, we compared the fruit quality of self-pollinated apple plants (cultivar 'Hanfu') in self-pollination or cross-pollinated by another cultivar 'Qinguan'. Analysis of fruit quality revealed substantial differences in the external qualities between self- and cross-pollinated apple fruit, but not in the internal qualities. Fruits harvested from self-pollinated 'Hanfu' were smaller and more asymmetrical than those harvested from the cross-pollinated plants. We developed a mathematical model describing how seed number and distribution affect fruit growth. According to this model, the fewer the seeds, the greater the force released from the seeds and the more asymmetrical the fruit. Detection of endogenous hormone and the associated gene expression revealed that gibberellin (GA) levels and GA transporter gene expression on the seedless side were significantly lower than those on the seeded side. Analysis of fruit pectin methylesterase activity and demethylated pectin levels indicated that the lack of GA limits fruit cell wall extension. Additionally, spraying the self-pollinating plants with gibberellic acid increased the fruit weight and lowered the proportion of asymmetrical fruit, recovering the exterior fruit quality to that of the cross-pollinated fruit. Furthermore, exogenous GA treatment increased the wax layer thickness and reduced the fruit water loss rate, leading to a dramatic improvement in fruit storage capacity. Therefore, exogenous GA treatment could be used to ensure regular fruit production of self-pollinated 'Hanfu'.
虽然有少数几个苹果(Malus × domestica)品种是自交亲和的,但关于自交和异交苹果果实品质的差异却知之甚少。在本研究中,我们比较了自交亲和品种‘寒富’自交和异交授粉(另一品种‘庆元’)的果实品质。果实品质分析表明,自交和异交苹果果实的外观品质存在显著差异,但内在品质没有差异。自交‘寒富’果实比异交果实小且更不对称。我们建立了一个描述种子数量和分布如何影响果实生长的数学模型。根据该模型,种子越少,种子释放的力就越大,果实就越不对称。内源激素及其相关基因表达的检测表明,无核侧的赤霉素(GA)水平和 GA 转运体基因表达显著低于有核侧。果胶甲酯酶活性和去甲基化果胶水平分析表明,GA 的缺乏限制了果实细胞壁的延伸。此外,向自交植株喷施赤霉素可增加果实重量,降低果实不对称比例,使外观品质恢复到异交果实的水平。此外,外源 GA 处理增加了蜡层厚度,降低了果实失水率,从而显著提高了果实贮藏能力。因此,外源 GA 处理可用于确保自交‘寒富’的正常果实生产。