Metabolomic and Transcriptomic Analysis of the Mechanism of the Apple Coloration Change After Uncovering Fruit Bag
文献类型: 外文期刊
作者: Duan, Pengwei 1 ; Ma, Xiaojian 1 ; Shi, Haiqiang 1 ; Qin, Lizhe 1 ; Du, Jizhuang 1 ; Yang, Sumiao 1 ; Zhang, Jianjun 2 ;
作者机构: 1.Hebei Acad Agr & Forestry Sci, Shijiazhuang Inst Pomol, Shijiazhuang 050061, Hebei, Peoples R China
2.Hebei Acad Agr & Forestry Sci, Shijiazhuang 050000, Hebei, Peoples R China
关键词: Apple; metabolites; flavonoid; peel coloration; anthocyanin
期刊名称:INTERNATIONAL JOURNAL OF FRUIT SCIENCE ( 影响因子:2.5; 五年影响因子:2.9 )
ISSN: 1553-8362
年卷期: 2025 年 25 卷 1 期
页码:
收录情况: SCI
摘要: Coloring is an important external quality of apples. Commercial apple varieties are bagged before the fruits ripen to ensure they grow in a pesticide-free environment, including preventing mechanical damage, reducing sunburn, etc. When the apple reaches the green fruit stage, the bag can be uncovered until it ripens and the peel is colored. There are two color patterns of "Fuji" apple peels (stripe and blush). In this study, the pattern of metabolite accumulation and gene expression was profiled in the striped and blushed apple peels at three ripening periods to elucidate the color formation mechanism within two weeks after removing the bag. The phenotypes presented in the peel coloring process are different between SF (stripe red) and HM (blush red), which have different accumulated levels of metabolites and gene expression during the coloring process. At the green fruit stage, a total of 83 differentially accumulated metabolites and 674 differentially expressed genes were identified between SF and HM. At the color turning stage, 48 DAMs and 880 DEGs were identified, including 20 flavonoids and 17 related genes. At the complete coloring stage, 95 DAMs and 2258 DEGs were identified, including 34 flavonoids and 23 related genes. In this study, a total of 10 kinds of key anthocyanins were found in the apple peel color-turning process. Keracyanin and cyanin were accumulated significantly at the apple color-turning period, while cyanidin-3-O-(6''-O-malonyl) glucoside was accumulated at the complete coloring period. These key metabolites and related regulatory genes are responsible for the stripe and blush color formation in apple peel after uncovering the fruit bag.
- 相关文献
作者其他论文 更多>>
-
Genome-Wide Identification of Sorghum Paclobutrazol-Resistance Gene Family and Functional Characterization of SbPRE4 in Response to Aphid Stress
作者:Guo, Yongchao;Wang, Zhifang;Jiao, Zhiyin;Yuan, Guang;Niu, Jingtian;Lv, Peng;Wang, Jinping;Shi, Yannan;Cui, Li;Duan, Pengwei
关键词:Paclobutrazol-Resistance (PRE); sorghum (Sorghum bicolor); genome-wide identification; aphid stress
-
Integrating transcriptome and physiological analyses to elucidate the molecular responses of sorghum to fluxofenim and metolachlor herbicide
作者:Shi, Yannan;Wang, Jinping;Wang, Zhifang;Jiao, Zhiyin;Du, Qi;Jia, Xinyue;Niu, Jingtian;Du, Ruiheng;Ji, Guisu;Lv, Peng;Duan, Pengwei;Cao, Junfeng
关键词:Fluxofenim; Herbicide injury; Metolachlor; Phytohormones; Sorghum
-
Selenium application during fruit development can effectively inhibit browning of fresh-cut apples by enhancing antioxidant capacity and suppressing polyphenol oxidase activity
作者:Wang, Xinyue;Chang, Feiyang;Dong, Qinglong;Jia, Peng;Luan, Haoan;Wang, Xiaoxiang;Zhang, Jiaan;Yuan, Xu;Zhang, Xuemei;Qi, Guohui;Guo, Suping;Yang, Sumiao
关键词:Browning; Fresh-cut apples; Selenium; Antioxidant capacity
-
Complete mitochondrial genome of Phyllonorycter ringoniella (Lepidoptera: Gracillariidae)
作者:Zhou, Nan;Xu, Guoliang;Zhang, Shengping;Lv, Dezhi;Yang, Sumiao;Song, Zhanbao;Meng, Chun
关键词:Mitochondrial genome; Gracillariidae; Phyllonorycter ringoniella; phylogenetic analysis
-
Strawberry Cultivar 'Shimei-7' for Sightseeing and Fruit-Picking Tourism
作者:Yang, Li;Li, Li;Yang, Lei;Hao, Baochun;Zhang, Jianjun;Li, Haishan
关键词:new cultivar;soluble solids;disease resistance;semi-forcing culture;Hebei Province;China



