Department of Agricultural and Environmental Sciences (DISAA), University of Milan , via Celoria 2, 20133 Milan, Italy.
Hortic Res. 2016 Jan 20;3:15067. doi: 10.1038/hortres.2015.67. eCollection 2016.
The last decade has been characterized by a decrease in peach (Prunus persica) fruit consumption in many countries, foremost due to unsatisfactory quality. The sugar content is one of the most important quality traits perceived by consumers, and the development of novel peach cultivars with sugar-enhanced content is a primary objective of breeding programs to revert the market inertia. Nevertheless, the progress reachable through classical phenotypic selection is limited by the narrow genetic bases of peach breeding material and by the complex quantitative nature of the trait, which is deeply affected by environmental conditions and agronomical management. The development of molecular markers applicable in MAS or MAB has become an essential strategy to boost the selection efficiency. Despite the enormous advances in 'omics' sciences, providing powerful tools for plant genotyping, the identification of the genetic bases of sugar-related traits is hindered by the lack of adequate phenotyping methods that are able to address strong within-plant variability. This review provides an overview of the current knowledge of the metabolic pathways and physiological mechanisms regulating sugar accumulation in peach fruit, the main advances in phenotyping approaches and genetic background, and finally addressing new research priorities and prospective for breeders.
过去十年,许多国家的桃(Prunus persica)果实消费量下降,主要原因是果实质量不尽如人意。含糖量是消费者感知的最重要的品质特征之一,培育含糖量增加的新型桃品种是扭转市场惯性的首要目标。然而,通过经典表型选择所能达到的进展受到桃育种材料遗传基础狭窄和性状的复杂数量性质的限制,该性状受环境条件和农艺管理的影响很大。适用于 MAS 或 MAB 的分子标记的开发已成为提高选择效率的必要策略。尽管“组学”科学取得了巨大进展,为植物基因型鉴定提供了强大的工具,但由于缺乏能够解决植株内变异性强的适当表型方法,糖相关性状的遗传基础的鉴定受到阻碍。本文综述了桃果实中糖积累的代谢途径和生理机制的最新知识、表型分析方法和遗传背景的主要进展,并最终提出了新的研究重点和育种者的前景。