Guo Xiaomeng, Luo Tao, Han Dongmei, Wu Zhenxian
College of Horticulture South China Agricultural University/Guangdong Provincial Key Laboratory of Postharvest Science of Fruits and Vegetables/Engineering Research Center for Postharvest Technology of Horticultural Crops in South China Ministry of Education Guangzhou China.
Institute of Fruit Tree Research Guangdong Academy of Agricultural Sciences/Key Laboratory of Biology and Genetic Improvement of Horticultural Crops (South China) of Ministry of Agriculture Guangzhou China.
Food Sci Nutr. 2019 Sep 30;7(11):3560-3569. doi: 10.1002/fsn3.1208. eCollection 2019 Nov.
Studies on how temperature affects the postharvest quality of litchi have focused mainly on pericarp browning but rarely on the metabolites in postharvest litchi pulp. In this study, the differences in respiration rates, total soluble solid content, and titratable acid content demonstrated that room and low temperatures have different effects on the quality of "Feizixiao" litchi pulp. UHPLC-ESI-QTOF-MS/MS analysis was performed to compare the differentially expressed metabolites (DEMs) in litchi pulp after 8 days of storage at room temperature (RT-8 d) with those in litchi pulp after 28 days of storage at low temperature (LT-28 d). Nineteen carbohydrates (phosphohexoses, sorbitol, and mannose), fifteen acids, seven amino acids, nine energy metabolites and nucleotides, and six aliphatic and secondary metabolites were identified as common DEMs in RT-8 d and LT-28 d pulps. These findings indicated active fructose and mannose metabolism and increased catabolism of nicotinate, nicotinamide, alanine, aspartate, and glutamate. Four carbohydrates (mainly phosphohexoses), five acids, ten amino acids, three aliphatic and secondary metabolites, and one hormone were identified as unique DEMs in RT-8 d pulp, the consumption of key metabolites in glycolysis and the tricarboxylic acid cycle, and accumulation of phenylalanine, tyrosine, and tryptophan. Active consumption of nucleotide metabolites and biosynthesis of aliphatics in LT-28 d pulp were indicated by unique DEMs (eleven carbohydrates, four acids, seven amino acids, seven energy metabolites and nucleotides, and six aliphatic and secondary metabolites). These results provided an unambiguous metabolic fingerprint, thereby revealing how room and low temperatures differentially influenced the quality of litchi pulp.
关于温度如何影响荔枝采后品质的研究主要集中在果皮褐变上,而很少关注采后荔枝果肉中的代谢物。在本研究中,呼吸速率、总可溶性固形物含量和可滴定酸含量的差异表明,室温和低温对“妃子笑”荔枝果肉品质有不同影响。采用超高效液相色谱-电喷雾电离-四极杆飞行时间串联质谱(UHPLC-ESI-QTOF-MS/MS)分析,比较室温储存8天(RT-8 d)的荔枝果肉与低温储存28天(LT-28 d)的荔枝果肉中差异表达代谢物(DEM)。19种碳水化合物(磷酸己糖、山梨醇和甘露糖)、15种酸、7种氨基酸、9种能量代谢物和核苷酸以及6种脂肪族和次生代谢物被鉴定为RT-8 d和LT-28 d果肉中的常见DEM。这些发现表明果糖和甘露糖代谢活跃,烟酸、烟酰胺、丙氨酸、天冬氨酸和谷氨酸的分解代谢增加。4种碳水化合物(主要是磷酸己糖)、5种酸、10种氨基酸、3种脂肪族和次生代谢物以及1种激素被鉴定为RT-8 d果肉中的独特DEM,糖酵解和三羧酸循环中关键代谢物的消耗以及苯丙氨酸、酪氨酸和色氨酸的积累。独特的DEM(11种碳水化合物、4种酸、7种氨基酸、7种能量代谢物和核苷酸以及6种脂肪族和次生代谢物)表明LT-28 d果肉中核苷酸代谢物的活跃消耗和脂肪族的生物合成。这些结果提供了明确的代谢指纹图谱,从而揭示了室温和低温如何不同地影响荔枝果肉的品质。