Yu Zhibo, Huang Honghao, Cao Shuangxin, Wang Qi
School of Life Sciences, Zhengzhou University, 100 Science Avenue, Zhengzhou 450001, China.
Int J Mol Sci. 2025 Jun 6;26(12):5460. doi: 10.3390/ijms26125460.
Split pit is a key factor affecting the quality and yield of peaches; it refers to the failure of the endocarp to close along the suture line. There are significant cultivar-specific differences in peaches regarding their susceptibility or resistance to split pit. During fruit ripening, the stable lignification of the endocarp is crucial to prevent split pit. Excessively rapid and unstable fruit development caused by extreme environments seriously affects endocarp formation, leading to split-pit traits. The uneven distribution of phytohormones is one of the important reasons for uneven fruit growth and split pit. The mature dehiscence model of provides important references for studying the molecular mechanism of split pit in peaches. This review summarizes the occurrence time, fruit characteristics, influencing factors, and existing research progress on the molecular mechanisms of peach split pit. Finally, it introduces the latest technical methods for studying the molecular mechanisms of split pit and provides future research directions. This paper aims to help breeders understand the possible causes of split pit in peaches, provide a theoretical basis for the prevention and control of split pit, and promote the sustainable development of the peach industry.
裂核是影响桃子品质和产量的关键因素;它是指内果皮沿缝合线未能闭合。桃子在对裂核的易感性或抗性方面存在显著的品种特异性差异。在果实成熟过程中,内果皮的稳定木质化对于防止裂核至关重要。极端环境导致的果实发育过快且不稳定会严重影响内果皮形成,从而产生裂核性状。植物激素分布不均是果实生长不均和裂核的重要原因之一。[此处“成熟开裂模型”原文未明确具体模型名称,可能有误,暂且保留英文]的成熟开裂模型为研究桃子裂核的分子机制提供了重要参考。本综述总结了桃子裂核的发生时间、果实特征、影响因素以及分子机制方面的现有研究进展。最后,介绍了研究裂核分子机制的最新技术方法,并提供了未来的研究方向。本文旨在帮助育种者了解桃子裂核的可能原因,为裂核的防治提供理论依据,促进桃子产业的可持续发展。