数字农科院2.0

Physicochemical Properties of Geographical Indication (GI) Sweet Cherries in China and Their Influencing Factors of Cultivar, Climate Type, and Soil Condition

文献类型: 外文期刊

作者: Ying Nie;Jiazhang Huang;Rui Liu;Pei Wang;Peng Liu;Man Lu;Junmao Sun

作者机构:

关键词: geographical indication;influencing factors;physiochemical properties;sweet cherry

期刊名称: Horticulturae

ISSN: 2311-7524

年卷期: 2023 年 9 卷 10 期

页码:

收录情况: SCIE(2023版)

摘要: As one of the fruits widely planted in China, the quality of sweet cherries is affected by various factors. This study aims to investigate the characteristics of geographical indication (GI) sweet cherries grown in China and to analyze the effects of cultivars, climate types, and soil conditions on their quality traits. Twenty-two parameters of nine cherry samples and their planted soil properties were analyzed through a descriptive analysis and correlation analysis. There were significant differences in the physiochemical traits. Notable positive correlations between the fruit weight and its size, rate of edibility, and flavonoid content were shown. The Univariate-General Line Model exhibited that weight, soluble solids content (SSC), titratable acidity (TA), and total phenolic content (TPC) were mainly influenced by both the cultivar and climate type, while only the cultivar affected the maturity index (MI). Soil condition parameters were significantly different for each sample. Based on the established linear regression models, it was found that soil P had a positive impact on SSC and TA, but a negative effect on TPC (p < 0.05). On the other hand, soil K had a negative effect on TA but a positive impact on TPC (p < 0.05).

分类号:

  • 相关文献

[1]Application of GC-IMS coupled with chemometric analysis for the classification and authentication of geographical indication agricultural products and food. Hong Zhu,Dazhou Zhu,Junmao Sun. 2023

[2]Geographical origin authentication of agricultural products in the China–EU Geographical Indications Agreement: A comprehensive review of Chinese products. Yang X.,Li Y.,Zhao S.,Zhang P.,Zhao Y.. 2024

[3]The authentication of Yanchi tan lamb based on lipidomic combined with particle swarm optimization-back propagation neural network. Qi Yang,Dequan Zhang,Chongxin Liu,Le Xu,Shaobo Li,Xiaochun Zheng,Li Chen. 2024

[4]Chemical synthesis of phytosterol esters of polyunsaturated fatty acids with ideal oxidative stability. Deng Qianchun,Zhang Pin,Huang Qingde,Huang Fenghong,Wei Fang,Zheng Mingming,Yu Xiao,Zhou Qi,Zheng Chang.

[5]Effects of Biogas Slurry on Crop Yield, Physicochemical Properties and Aggregation Characteristics of Lime Concretion Soil in Wheat-Maize Rotation in the North China Plain. Tang, Jiao,Davy, Anthony J.,Wang, Wei,Zhang, Xihuan,Wu, Dafu,Hu, Lin,Yin, Jinzhong. 2022

[6]Application of High-Pressure Homogenization for Apple Juice: An Assessment of Quality Attributes and Polyphenol Bioaccessibility. Krystian Marszałek,Urszula Trych,Adrianna Bojarczuk,Justyna Szczepańska,Zhe Chen,Xuan Liu,Jinfeng Bi. 2023

[7]Impact of physiochemical properties of protein ingredients on pellet quality and microstructure. Chunyu Ge,Min Xue,Jamie Marie Hooft,Margareth Øverland,Xiaofang Liang,Jie Wang,Peng Meng,Yuchang Qin,Hao Wang. 2023

[8]Effects of different rearing systems on carcase traits, physicochemical properties, basic chemical composition, fatty acid profiles and amino acid profiles of Gangba lamb. 丁赫,,德庆卓嘎,,格桑嘉措,,张继泽,,张晓庆,,塔娜. 2024

[9]Exploring the Superiorities of Restructured Peaches During Freeze-Drying and Storage. Xie, Yitong,Bi, Jinfeng,Jin, Xin. 2025

[10]Exploring the role of milk fat structure and crystallization in enhancing whipped cream properties and stability. Gaoyang Cui,Qichen Liu,Feng Li,Xiaoyang Pang,Ning Xie,Xiaolu Geng,Hongliang Li,Yunna Wang,Jiaping Lv,Shuwen Zhang. 2025

[11]The Impact of OsERF34 on Rice Grain-Processing Traits and Appearance Quality. Du, Zhimin,Jia, Yinan,Hu, Peisong,Xu, Hai,Jiao, Guiai,Tang, Shaoqing. 2025

[12]PacMYBA, a sweet cherry R2R3-MYB transcription factor, is a positive regulator of salt stress tolerance and pathogen resistance. Shen, Xinjie,Guo, Xinwei,Guo, Xiao,Zhao, Di,Li, Tianhong,Shen, Xinjie,Zhao, Wei,Chen, Jingsheng,Li, Tianhong.

[13]Outdoor color rating of sweet cherries using computer vision. Wang, Qi,Wang, Hui,Xie, Lijuan,Zhang, Qin,Wang, Hui,Xie, Lijuan.

[14]Role of abscisic acid and ethylene in sweet cherry fruit maturation: molecular aspects. Ren, J.,Chen, P.,Dai, S. J.,Li, P.,Li, Q.,Ji, K.,Wang, Y. P.,Leng, P.,Ren, J.. 2011

[15]Exogenous Melatonin Delays Postharvest Fruit S.enescence And Maintains The Q uality Of Sweet Cherries. Wang, Feng,Wang, Feng,Wang, Feng,Zhao, Qifeng,Zhang, Xiaoping,Yang, Qingzhen. 2019

[16]Sweet cherry AP2/ERF transcription factor, PavRAV2, negatively modulates fruit size by directly repressing PavKLUH expression. Xiliang Qi,Lifeng Liu,Congli Liu,Lulu Song,Yuanxin Dong,Lei Chen,Ming Li. 2023

[17]Pacmyba, A Sweet Cherry R2R3-Myb T.ranscription Factor, Is A P ositive Regulator Of Salt Stress Tolerance And Pathogen Resistance. Shen, XJ, Guo, XW, Guo, X, Zhao, D, Zhao, W, Chen, JS, Li, TH. 2017

[18]A sweet cherry AGAMOUS-LIKE transcription factor PavAGL15 affects fruit size by directly repressing the PavCYP78A9 expression. Yuanxin Dong,Xiliang Qi,Congli Liu,Lulu Song,Li Ming. 2022

[19]A Sweet Cherry Glutathione S-Transferase Gene, PavGST1, Plays a Central Role in Fruit Skin Coloration. Xiliang Qi,Congli Liu,Lulu Song,Yuanxin Dong,Lei Chen,Ming Li. 2022

[20]A 5.2-kb insertion in the coding sequence of PavSCPL, a serine carboxypeptidase-like enhances fruit firmness in Prunus avium. Qi, Xiliang,Dong, Yuanxin,Liu, Congli,Song, Lulu,Chen, Lei,Li, Ming. 2024

作者其他论文 更多>>