Xu Yue, Huo Liyue, Zhao Keke, Li Yawei, Zhao Xinran, Wang Huiying, Wang Wenli, Shi Haiyan
College of Horticulture, Hebei Agricultural University, Baoding, Hebei, China.
Front Plant Sci. 2023 Jan 11;13:1096645. doi: 10.3389/fpls.2022.1096645. eCollection 2022.
Salicylic acid (SA) and ethylene (ET) are crucial fruit senescence hormones. SA inhibited ET biosynthesis. However, the mechanism of SA delaying fruit senescence is less known. ETHYLENE INSENSITIVE 3 (EIN3), a key positive switch in ET perception, functions as a transcriptional activator and binds to the primary ET response element that is present in the promoter of the gene. In this study, a gene encoding putative EIN3 protein was cloned from sand pear and designated as . The deduced PpEIN3a contains a conserved EIN3 domain. The evolutionary analysis results indicated that PpEIN3a belonged to the EIN3 superfamily. Real-time quantitative PCR analysis revealed that the accumulation of transcripts were detected in all tissues of this pear. Moreover, expression was regulated during fruit development. Interestingly, the expression of was downregulated by SA but upregulated by ET, auxin, and glucose. Additionally, the contents of free and conjugated SA were higher than those of the control after SA treatment. While the content of ET and auxin (indole-3-acetic acid, IAA) dramatically decreased after SA treatment compared with control during fruit senescence. The content of glucose increased when fruit were treated by SA for 12 h and then there were no differences between SA treatment and control fruit during the shelf life. SA also delayed the decrease in sand pear ( Nakai. 'Whangkeumbae') fruit firmness. The soluble solid content remained relatively stable between the SA treated and control fruits. This study showed that SA plays an antagonistic role toward ET, auxin, and glucose in regulating the expression of to delay fruit senescence.
水杨酸(SA)和乙烯(ET)是果实衰老的关键激素。SA抑制ET生物合成。然而,SA延缓果实衰老的机制尚不清楚。乙烯不敏感3(EIN3)是ET感知中的关键正向开关,作为转录激活因子发挥作用,并与该基因启动子中存在的主要ET反应元件结合。在本研究中,从砂梨中克隆了一个编码假定EIN3蛋白的基因,并将其命名为。推导的PpEIN3a包含一个保守的EIN3结构域。进化分析结果表明,PpEIN3a属于EIN3超家族。实时定量PCR分析表明,在该梨的所有组织中均检测到转录本的积累。此外,在果实发育过程中,表达受到调控。有趣的是,的表达受SA下调,但受ET、生长素和葡萄糖上调。此外,SA处理后,游离和结合SA的含量均高于对照。而在果实衰老过程中,SA处理后ET和生长素(吲哚-3-乙酸,IAA)的含量与对照相比显著降低。SA处理果实12小时后,葡萄糖含量增加,在货架期内SA处理果实与对照果实之间没有差异。SA还延缓了砂梨(Nakai.‘黄金梨’)果实硬度的下降。SA处理果实和对照果实之间的可溶性固形物含量保持相对稳定。本研究表明,SA在调节的表达以延缓果实衰老方面对ET、生长素和葡萄糖起拮抗作用。