Cell wall disassembly, metabolome and transcriptome analysis in sweet cherry fruit with induced surface pitting

栽培 代谢组 转录组 非生物成分 植物 生物 冷库 代谢组学 细胞壁 化学 园艺 基因表达 基因 生物化学 色谱法 古生物学
作者
Excequel Ponce,Gerardo Núñez‐Lillo,Camila Bravo,Juan C. Vidal,Patricio Tapia-Reyes,Claudio Meneses,Romina Pedreschi,Claudia Fuentealba
出处
期刊:Postharvest Biology and Technology [Elsevier BV]
卷期号:198: 112262-112262 被引量:7
标识
DOI:10.1016/j.postharvbio.2023.112262
摘要

Surface pitting is the main quality problem that develops during prolonged storage of sweet cherries. It appears as one or more depressions on the surface of the fruit and is associated with the collapse of cells under the skin of the fruit. However, this physiological disorder is not shown in all cultivars with the same intensity. This research aims to analyze the cell wall disassembly of two cultivars displaying contrasting susceptibility to damage after pitting induction. In addition, we evaluated the metabolomic and transcriptomic changes in sweet cherries during cold storage. Our results show that damage to 'Sweetheart' fruit was more severe than damage to 'Bing' fruit. No differences were observed in the cell wall composition between nonpitted and pitted cherries; however, the varietal differences during cold storage were the most significant. The resistant cultivar 'Bing' showed a longer sidechain of RG-I; instead, 'Sweetheart' PME and PG activity was more marked at the beginning of cold storage. The metabolomics analysis revealed several compounds related to the abiotic stress response, such as 3-O-coumaroyl-D-quinic acid, chlorogenic acid, GABA and β-sitosterol. Furthermore, transcriptomics showed a higher expression of stress-related hormones in the susceptible cultivar and cell wall remodeling-related genes in the resistant cultivar. In conclusion, the contrasting susceptivity to surface pitting in sweet cherries can be attributed to the varietal response to cold storage rather than the mechanical stress of pitting induction.
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