Guo Shaolei, Ma Ruijuan, Xu Jianlan, Zhang Binbin, Yu Mingliang, Gao Zhihong
Institute of Pomology, Jiangsu Academy of Agricultural Sciences/Jiangsu Key Laboratory for Horticultural Crop Genetic Improvement, Nanjing 210014, China.
College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.
Foods. 2023 Apr 14;12(8):1648. doi: 10.3390/foods12081648.
Peach ( (L.) Batsch) is a highly desirable fruit that is consumed around the world. However, the peach fruit is highly perishable after harvest, a characteristic that limits the distribution and supply to the market and causes heavy economic losses. Thus, peach fruit softening and senescence after harvest urgently need to be addressed. In the current study, transcriptomic analysis was performed to identify candidate genes associated with peach fruit softening and senescence, comparing peach fruit from cultivars with different flesh textures, namely melting and stony hard (SH) flesh textures during storage at room temperature. The mitogen-activated protein kinase signaling pathway-plant and plant hormone signal transduction pathways were associated with peach fruit softening and senescence according to the Venn diagram analysis and weighted gene co-expression network analysis. The expression levels of seven genes, including , , , , , and , were higher in melting peach fruit than in SH peach fruit during storage. Furthermore, the SH peach fruit softened rapidly after 1-naphthylacetic acid treatment, during which the levels of expression of these seven genes, determined by a quantitative reverse transcription polymerase chain reaction, were strongly induced and upregulated. Thus, these seven genes may play essential roles in regulating peach fruit softening and senescence.
桃((L.) Batsch)是一种广受欢迎的水果,在全球范围内都有消费。然而,桃果实采后极易腐烂,这一特性限制了其向市场的分销和供应,并造成了巨大的经济损失。因此,迫切需要解决桃果实采后的软化和衰老问题。在本研究中,进行了转录组分析,以鉴定与桃果实软化和衰老相关的候选基因,比较了不同果肉质地品种(即溶质型和硬肉型(SH)果肉质地)的桃果实在室温贮藏期间的情况。根据维恩图分析和加权基因共表达网络分析,丝裂原活化蛋白激酶信号通路-植物和植物激素信号转导通路与桃果实软化和衰老有关。在贮藏期间,包括[此处原文缺失基因名称]、[此处原文缺失基因名称]、[此处原文缺失基因名称]、[此处原文缺失基因名称]、[此处原文缺失基因名称]、[此处原文缺失基因名称]和[此处原文缺失基因名称]在内的7个基因在溶质型桃果实中的表达水平高于SH桃果实。此外,1-萘乙酸处理后,SH桃果实迅速软化,在此期间,通过定量逆转录聚合酶链反应测定的这7个基因的表达水平被强烈诱导并上调。因此,这7个基因可能在调节桃果实软化和衰老中起重要作用。