Menconi Jacopo, Perata Pierdomenico, Gonzali Silvia
PlantLab, Center of Plant Sciences, Scuola Superiore Sant'Anna, Via Guidiccioni 10, San Giuliano Terme, 56010, Pisa, Italy.
PlantLab, Center of Plant Sciences, Scuola Superiore Sant'Anna, Via Guidiccioni 10, San Giuliano Terme, 56010, Pisa, Italy.
Trends Plant Sci. 2024 May;29(5):589-604. doi: 10.1016/j.tplants.2023.12.010. Epub 2024 Jan 4.
Over the past decade, progress has been made in the characterization of anthocyanin synthesis in fruits of plants belonging to the tomato clade. The genomic elements underlying the activation of the process were identified, providing the basis for understanding how the pathway works in these species. In this review we explore the genetic mechanisms that have been characterized to date, and detail the various wild relatives of the tomato, which have been crucial for recovering ancestral traits that were probably lost during evolution from green-purple to yellow and red tomatoes. This knowledge should help developing strategies to further enhance the status of the commercial tomato lines on sale, based on both genome editing and breeding techniques.
在过去十年中,番茄进化分支植物果实中花青素合成的表征取得了进展。确定了该过程激活背后的基因组元件,为理解该途径在这些物种中的工作方式提供了基础。在本综述中,我们探讨了迄今为止已被表征的遗传机制,并详细介绍了番茄的各种野生近缘种,这些野生近缘种对于恢复在从绿色-紫色番茄向黄色和红色番茄进化过程中可能丢失的祖先性状至关重要。这些知识应有助于制定战略,基于基因组编辑和育种技术进一步提升在售商业番茄品种的品质。