Department of Chemistry, Faculty of Science, Chulalongkorn University, Phayathai Rd., Pathumwan, Bangkok, 10330, Thailand.
The Chemical Approaches for Food Applications Research Group, Faculty of Science, Chulalongkorn University, Phayathai Rd., Pathumwan, Bangkok, 10330, Thailand.
Sci Rep. 2021 Jun 25;11(1):13301. doi: 10.1038/s41598-021-92492-6.
The popularity and high price of durian make quality control in terms of ripeness very important, which in turn depends heavily on harvesting at an appropriate maturity stage. To date, reports on data-driven methods for maturity prediction are scarce, with many rather focusing on ripeness prediction. Herein, we report the first disclosure of key molecular markers in the liquid extract of durian peduncle that can be a predictive tool for maturity. Multiple chromatographic and spectroscopic techniques including TLC, HPLC, PS-MS, LC-MS/MS, and NMR, were used to characterize chemical profiles of the aqueous extracts from peduncles at different ages. Four compounds that show positive correlations with maturity were identified as sucrose, asparagine, arginine, and pipecolic acid, with asparagine as the most abundant species. This finding paves the way for more research of high impact such as the relationship between biochemical reactions in peduncle and pulp, and the development of accurate and non-destructive sensors for maturity prediction.
榴莲的普及和高昂价格使得其成熟度的质量控制非常重要,而成熟度的控制又在很大程度上依赖于在适当的成熟阶段进行收获。迄今为止,关于基于数据驱动的成熟度预测方法的报告很少,许多报告更多地关注于成熟度预测。在此,我们首次揭示了榴莲果柄液体提取物中的关键分子标记物,这些标记物可以作为成熟度的预测工具。使用多种色谱和光谱技术,包括 TLC、HPLC、PS-MS、LC-MS/MS 和 NMR,对不同年龄的果柄水提物的化学特征进行了表征。鉴定出四种与成熟度呈正相关的化合物,分别为蔗糖、天冬酰胺、精氨酸和哌啶酸,其中天冬酰胺含量最丰富。这一发现为更具影响力的研究铺平了道路,例如研究果柄和果肉中生化反应之间的关系,以及开发准确和非破坏性的成熟度预测传感器。