CAS Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture, The Innovative Academy of Seed Design of Chinese Academy of Sciences, Wuhan, Botanical Garden, Wuhan, 430074, China.
Hubei Hongshan Laboratory, Wuhan, 430070, China.
Plant J. 2023 May;114(4):951-964. doi: 10.1111/tpj.16189. Epub 2023 Mar 31.
Red coloration around the stone (Cs) is an important trait of canned peaches (Prunus persica). In this study, an elongated hypocotyl 5 gene in peach termed PpHY5 was identified to participate in the regulation of the Cs trait. The E3 ubiquitin ligase PpCOP1 was expressed in the flesh around the stone and could interact with PpHY5. Although HY5 is known to be degraded by COP1 in darkness, the PpHY5 gene was activated in the flesh tissue surrounding the stone at the ripening stages and its expression was consistent with anthocyanin accumulation. PpHY5 was able to promote the transcription of PpMYB10.1 through interacting with its partner PpBBX10. Silencing of PpHY5 in the flesh around the stone caused a reduction in anthocyanin pigmentation, while transient overexpression of PpHY5 and PpBBX10 resulted in anthocyanin accumulation in peach fruits. Moreover, transgenic Arabidopsis seedlings overexpressing PpHY5 showed increased anthocyanin accumulation in leaves. Our results improve our understanding of the mechanisms of anthocyanin coloration in plants.
桃子(Prunus persica)罐头中石头周围的红色着色是一个重要特征。在这项研究中,鉴定出桃中的一个伸长下胚轴 5 基因(PpHY5)参与调控 Cs 性状。E3 泛素连接酶 PpCOP1 在石周果肉中表达,并能与 PpHY5 相互作用。虽然已知 HY5 在黑暗中被 COP1 降解,但 PpHY5 基因在成熟阶段石周组织中被激活,其表达与花青素积累一致。PpHY5 通过与其伴侣 PpBBX10 相互作用,能够促进 PpMYB10.1 的转录。在石周果肉中沉默 PpHY5 会导致花青素色素沉着减少,而过表达 PpHY5 和 PpBBX10 会导致桃果实中花青素积累。此外,过表达 PpHY5 的转基因拟南芥幼苗在叶片中表现出增加的花青素积累。我们的研究结果提高了我们对植物中花青素着色机制的理解。