College of Horticulture, Northwest A&F University, Yangling, Shaanxi, P. R. China.
College of Mechanical and Electronic Engineering, Northwest A & F University, Yangling, Shaanxi, P. R. China.
Physiol Plant. 2024 Mar-Apr;176(2):e14278. doi: 10.1111/ppl.14278.
Harvest maturity significantly affects the quality of apple fruit in post-harvest storage process. Although the regulatory mechanisms underlying fruit ripening have been studied, the associated epigenetic modifications remain unclear. Thus, we compared the DNA methylation changes and the transcriptional responses of mature fruit (MF) and immature fruit (NF). There were significant correlations between DNA methylation and gene expression. Moreover, the sugar contents (sucrose, glucose, and fructose) were higher in MF than in NF, whereas the opposite pattern was detected for the starch content. The expression-level differences were due to DNA methylations and ultimately resulted in diverse fruit textures and ripeness. Furthermore, the higher ethylene, auxin, and abscisic acid levels in MF than in NF, which influenced the fruit texture and ripening, were associated with multiple differentially expressed genes in hormone synthesis, signaling, and response pathways (ACS, ACO, ZEP, NCED, and ABA2) that were regulated by DNA methylations. Multiple transcription factor genes involved in regulating fruit ripening and quality via changes in DNA methylation were identified, including MIKC-type MADS-box genes and fruit ripening-related genes (NAP, SPL, WRKY, and NAC genes). These findings reflect the diversity in the epigenetic regulation of gene expression and may be relevant for elucidating the epigenetic regulatory mechanism underlying the ripening and quality of apple fruit with differing harvest maturity.
收获成熟度显著影响苹果果实采后贮藏过程中的品质。虽然已经研究了果实成熟的调控机制,但相关的表观遗传修饰仍不清楚。因此,我们比较了成熟果实(MF)和未成熟果实(NF)的 DNA 甲基化变化和转录响应。DNA 甲基化与基因表达之间存在显著相关性。此外,MF 中的糖含量(蔗糖、葡萄糖和果糖)高于 NF,而淀粉含量则相反。表达水平的差异归因于 DNA 甲基化,最终导致不同的果实质地和成熟度。此外,MF 中的乙烯、生长素和脱落酸水平高于 NF,这些激素影响果实质地和成熟,与激素合成、信号转导和响应途径(ACS、ACO、ZEP、NCED 和 ABA2)中的多个差异表达基因有关,这些基因受到 DNA 甲基化的调控。通过 DNA 甲基化变化参与调控果实成熟和品质的多个转录因子基因被鉴定出来,包括 MIKC 型 MADS 框基因和与果实成熟相关的基因(NAP、SPL、WRKY 和 NAC 基因)。这些发现反映了基因表达表观遗传调控的多样性,可能有助于阐明不同收获成熟度苹果果实成熟和品质的表观遗传调控机制。