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代谢物谱分析揭示冷藏对肉质差异明显的油桃品种初级代谢的影响。

Metabolite Profiling Reveals the Effect of Cold Storage on Primary Metabolism in Nectarine Varieties with Contrasting Mealiness.

作者信息

Olmedo Patricio, Zepeda Baltasar, Delgado-Rioseco Joaquín, Leiva Carol, Moreno Adrián A, Sagredo Karen, Blanco-Herrera Francisca, Pedreschi Romina, Infante Rodrigo, Meneses Claudio, Campos-Vargas Reinaldo

机构信息

Centro de Estudios Postcosecha, Facultad de Ciencias Agronómicas, Universidad de Chile, Santiago 8831314, Chile.

Horticulture and Product Physiology, Department of Plant Sciences, Wageningen University, P.O. Box 16, 6700 AA Wageningen, The Netherlands.

出版信息

Plants (Basel). 2023 Feb 8;12(4):766. doi: 10.3390/plants12040766.

Abstract

Chilling injury is a physiological disorder caused by cold storage in peaches and nectarines. The main symptom of chilling injury is mealiness/wooliness, described as a lack of juice in fruit flesh. In this work, we studied two nectarine varieties (Andes Nec-2 and Andes Nec-3) with contrasting susceptibility to mealiness after cold storage. A non-targeted metabolomic analysis was conducted by GC-MS to understand if changes in metabolite abundance are associated with nectarine mealiness induced by cold storage. Multivariate analyses indicated that in unripe nectarines, cold storage promoted a higher accumulation of amino acids in both varieties. Interestingly, for ripe nectarines, cold storage induced an accumulation of fewer amino acids in both varieties and showed an increased abundance of sugars and organic acids. A pathway reconstruction of primary metabolism revealed that in ripe nectarines, cold storage disrupted metabolite abundance in sugar metabolism and the TCA cycle, leading to a differential accumulation of amino acids, organic acids, and sugars in mealy and juicy nectarines.

摘要

冷害是桃子和油桃冷藏引起的一种生理紊乱。冷害的主要症状是果肉粉质化/起毛,表现为果肉缺乏汁液。在这项研究中,我们研究了两个油桃品种(安第斯油桃2号和安第斯油桃3号),它们在冷藏后对粉质化的敏感性存在差异。通过气相色谱-质谱联用仪进行了非靶向代谢组学分析,以了解代谢物丰度的变化是否与冷藏诱导的油桃粉质化有关。多变量分析表明,在未成熟的油桃中,冷藏促进了两个品种中氨基酸的更高积累。有趣的是,对于成熟的油桃,冷藏导致两个品种中氨基酸的积累减少,并显示出糖和有机酸的丰度增加。初级代谢途径重建表明,在成熟的油桃中,冷藏扰乱了糖代谢和三羧酸循环中的代谢物丰度,导致粉质化和多汁油桃中氨基酸、有机酸和糖的差异积累。

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