数字农科院2.0

Metabolic Dynamics and Sensory Impacts of Aging on Peony Mead: Insights into Nonenzymatic Reactions

文献类型: 外文期刊

作者: Yuqian Ban;Yanli Zhang;Yongrui Ti;Ruiwen Lu;Jiaoling Wang;Zihan Song

作者机构:

关键词: aging;GC-IMS;nonenzymatic;peony mead;UHPLC–MS/MS

期刊名称: Foods

ISSN: 2304-8158

年卷期: 2025 年 14 卷 6 期

页码:

收录情况: SCIE(2025版)

摘要: Peony mead, an emerging fermented beverage, has attracted attention because of its unique flavor and health benefits. The dynamic changes in sensory quality and the molecular mechanisms involved during post-fermentation are still unclear, limiting its industrial production. In this study, GC-IMS (gas chromatography-ion mobility spectrometry) and UHPLC-MS/MS (ultrahigh-performance liquid chromatography–tandem mass spectrometry) were employed to systematically analyze the variations in aroma and quality of peony mead across aging stages. During the aging process, titratable acid content increased significantly, while soluble solids and reducing sugars decreased. Total phenol content initially rose but subsequently declined. Sensory analysis demonstrated that the sweet–acid balance and polyphenol content were critical in shaping the sensory characteristics of the product. Seventeen key volatile metabolites were identified via GC-IMS, with the 2-methyl-1-propanol dimer/polymer and 3-methyl-1-butanol dimer/polymer serving as potential characteristic markers. These key volatile metabolites underwent physicochemical reactions, yielding complex and coordinated aroma characteristics. UHPLC–MS/MS analysis revealed that nonvolatile metabolites changed significantly, which were driven by nonenzymatic reactions such as redox reactions, hydrolysis, and condensation. In addition, correlation analysis identified mechanisms by which key metabolites potentially contributed to sensory properties such as floral aroma, fruit fragrance, sweetness, sourness, etc. This study provided insights into quality changes during aging and supported the development of high-quality fermented beverages.

分类号:

  • 相关文献

[1]Aging of nickel added to soils as predicted by soil pH and time. Ma, Yibing,Ma, Yibing,Lombi, Enzo,McLaughlin, Mike J.,Oliver, Ian W.,Nolan, Annette L.,Lombi, Enzo,McLaughlin, Mike J.,Oorts, Koen,Smolders, Erike.

[2]Aging effects on molybdate lability in soils. Kirby, Jason K.,McLaughlin, Michael J.,Ma, Yibing,Ma, Yibing,Ajiboye, Babasola.

[3]SHORT-TERM NATURAL ATTENUATION OF COPPER IN SOILS: EFFECTS OF TIME, TEMPERATURE, AND SOIL CHARACTERISTICS. Ma, YB,Lombi, E,Nolan, AL,McLaughlin, MJ.

[4]Aging of zinc added to soils with a wide range of different properties: Factors and modeling. Zhang, Xi,Jiang, Bao,Ma, Yibing.

[5]Long-Term Dietary Alpha-Linolenic Acid Supplement Alleviates Cognitive Impairment Correlate with Activating Hippocampal CREB Signaling in Natural Aging Rats. Gao, Hui,Yan, Peipei,Huang, Hao,Sun, Taoping,Chen, Sijing,Liu, Liegang,Gao, Hui,Yan, Peipei,Zhang, Shun,Huang, Hao,Sun, Taoping,Chen, Sijing,Liu, Liegang,Huang, Fenghong,Deng, Qianchun,Huang, Qingde,Xu, Jiqu,Huang, Fenghong,Deng, Qianchun,Huang, Qingde,Xu, Jiqu,Ye, Keqiang.

[6]Effect of aging on the availability of zinc added to a calcareous clay soil. Ma, Y. B.,Uren, N. C..

[7]Chronic alpha-linolenic acid treatment alleviates age-associated neuropathology: Roles of PERK/eIF2 alpha signaling pathway. Gao, Hui,Yan, Peipei,Han, Hao,Yang, Wei,Yao, Ping,Liu, Liegang,Gao, Hui,Yan, Peipei,Zhang, Shun,Han, Hao,Yang, Wei,Yao, Ping,Liu, Liegang,Nie, Shuke,Huang, Fenghong,Deng, Qianchun,Huang, Qingde,Xu, Jiqu,Huang, Fenghong,Deng, Qianchun,Huang, Qingde,Xu, Jiqu,Wu, Hailei,Ye, Keqiang. 2016

[8]Immunization by influenza virus-like particles protects aged mice against lethal influenza virus challenge. Wen, Zhiyuan,Ye, Ling,Gao, Yulong,Pan, Lei,Dong, Ke,Compans, Richard W.,Yang, Chinglai,Wen, Zhiyuan,Ye, Ling,Gao, Yulong,Pan, Lei,Dong, Ke,Compans, Richard W.,Yang, Chinglai,Wen, Zhiyuan,Gao, Yulong,Bu, Zhigao,Pan, Lei,Dong, Ke. 2009

[9]Change Of The Extractability Of C.admium Added To Different S oils: Aging Effect And Modeling. Zhang, X, Zeng, SQ, Chen, SB, Ma, YB. 2018

[10]Transcriptomic analysis of laying hens revealed the role of aging-related genes during forced molting. Tongyu Zhang,Yu Chen,Junhui Wen,Yaxiong Jia,Liang Wang,Xueze Lv,Weifang Yang,Changqing Qu,Haiying Li,Huie Wang,Lujiang Qu,Zhonghua Ning. 2021

[11]Effect of three aging processes on physicochemical and As(V) adsorption properties of Ce/Mn-modified biochar. Huang X.,Lyu P.,Li L.,Xie J.,Zhu C.. 2022

[12]Effects of the aging of immobilization materials on the stability of immobilization remediation of cd-contaminated paddy soil. Shan Z.-J.,Chen Y.-H.,Zhang L.,Liu Y.,Jiao W.-X.,Lin D.-S.. 2021

[13]Experimental study on durability of wood-plastic composites by coupling dry-wet cycles and seawater environment. Jiang, Liangpeng,Li, Xiaokai,Fu, Jingjing,Teng, Wenxiang,Yang, Hongtao. 2022

[14]Single-worm quantitative proteomics reveals aging heterogeneity in isogenic Caenorhabditis elegans. Zhu, Tian-Yi,Li, Shang-Tong,Liu, Dan-Dan,Zhang, Xiajun,Zhou, Lianqi,Zhou, Rong,Yang, Bing. 2023

[15]Coating seeds with biopolymers extracted from waste-activated sludge. Chen Shi,Shi Chao Yuan,Lin Zhang,Xiang Yang Wang,Li Ting Hao,Shi Ming Su,Zhongfang Lei,Xiao Di Hao. 2024

[16]Has the Household Old-Age Burden Affected Farm Household Incomes? Evidence from a Survey of Chinese Farm Households. Hongwei Lu,Mingjie Gao,Guojing Li,Tingting Li,Qiyou Luo. 2024

[17]Uterine microbial communities and their potential role in the regulation of epithelium cell cycle and apoptosis in aged hens. Dong Dai,Jing Wang,Haijun Zhang,Shugeng Wu,Guanghai Qi. 2023

[18]Causal Analysis Between Gut Microbes, Aging Indicator, and Age-Related Disease, Involving the Discovery and Validation of Biomarkers. Lu, Chunrong,Wang, Xiaojun,Chen, Xiaochun,Qin, Tao,Ye, Pengpeng,Liu, Jianqun,Wang, Shuai,Luo, Weifei. 2025

[19]Nuciferine alleviates cognitive impairment by modulating endoplasmic reticulum stress in D-galactose-induced aging mice. Xiaojie Yang,Juntao Zhang,Weimin Wang,Xinyan Wu,Yuxuan Liu,Jianjun Deng,Haixia Yang. 2025

[20]Interactions of traditional and biodegradable microplastics with neonicotinoid pesticides. Kang Wang,Cheng Li,Haifeng Li,Qi Liu,Kifayatullah Khan,Fang Li,Wei Chen,Li Xu. 2024

作者其他论文 更多>>