Metabolomic and transcriptomic analysis reveal high solar irradiance inhibited the melanin formation in persimmon fruit peel
文献类型: 外文期刊
第一作者: Qi, Yingwei
作者: Qi, Yingwei;Wang, Chenyu;Song, Meijie;Liu, Yanfei;Jiang, Zitao;Yang, Yong;Ren, Xiaolin;Ding, Yuduan;Qi, Yingwei;Jiang, Yonghua;Liu, Jia
作者机构:
关键词: Persimmon; High solar irradiance; RNA-Seq; Metabolites; Melanin; PPO activity
期刊名称:ENVIRONMENTAL AND EXPERIMENTAL BOTANY ( 影响因子:5.7; 五年影响因子:6.0 )
ISSN: 0098-8472
年卷期: 2023 年 207 卷
页码:
收录情况: SCI
摘要: During fruit development of Diospyros kaki cv. 'Heishi', the peel color changed to orange-red when undergone high solar irradiance, which was different from turning black in normal condition. Limited information on this phenomenon of persimmon fruit has been reported. In the present study, we explored 'Heishi' persimmon fruit under two conditions of extreme solar irradiance during development. Their peel characteristics were evaluated, including organelle ultra-structure, polyphenol oxidase (PPO) activity, transcriptome profile, and metabolomics. The results showed that high solar irradiance severely degraded or ruptured chloroplast, and most of the analyzed metabolites were higher accumulated in high solar irradiance stressed peel than in the normal tissues. Significantly accumulated phenolics and carotenoids may contribute to photoprotection by scavenging high solar irradiance stress triggered ROS products. RNA-Seq analysis showed that many differentially expressed genes (DEGs) related to the accumulation of the analyzed metabolites were up-regulated under stress. The stress also significantly inhibited PPO activity at stages of melanin formation. The reduced melanin and significantly accumulated carotenoids (especially lycopene and beta-carotene) finally resulted in orange-red fruit peel.
分类号:
- 相关文献
作者其他论文 更多>>
-
Dynamic changes in the skin transcriptome for the melanin pigmentation in embryonic chickens
作者:Leng, Dong;Feng, Chungang;Leng, Dong;Yang, Maosen;Huang, Zhiying;Li, Mengmeng;Wang, Tao;Li, Diyan;Miao, Xiaomeng;Liu, Jia;Yang, Maosen;Huang, Zhiying
关键词:chicken; skin; transcriptome; embryo; melanin pigmentation
-
Protective effect of a newly probiotic Lactobacillus reuteri LY2-2 on DSS-induced colitis
作者:Yang, Yong;Liu, Hongli;Tong, Mingwei;Yang, Yong;Qiao, Yuyu;Liu, Ge;Yi, Gaoqin;Tong, Mingwei;Yang, Yong;Qiao, Yuyu;Liu, Ge;Yi, Gaoqin;Tong, Mingwei;Zhang, Ting
关键词:Probiotics;
Lactobacillus reuteri ; Colitis; Intestinal inflammation; Gut microbiota -
Genome-Wide Identification and Comprehensive Analysis of the PPO Gene Family in Glycine max and Glycine soja
作者:Song, Ziye;Dong, Yingshan;Song, Ziye;Wang, Bo;Liu, Jia;Liu, Nianxi;Yi, Zhigang;Li, Zhi;Dong, Zhimin;Zhang, Chunbao;Dong, Yingshan;Li, Yuqiu
关键词:
Glycine max ;Glycine soja ;PPO ; gene family -
Application of microalgae in remediation of heavy metal-contaminated soils and its stimulatory effect on wheat growth
作者:Liu, Jia;Liu, Yajing;Jiang, Han;Yang, Xiaokun;Wu, Yukun;Liang, Chengwei;Zhang, Xiaowen;Ye, Naihao;Zhang, Xiaowen;Ye, Naihao
关键词:Microalgae; Heavy metal-contaminated soils; Bioremediation; Soil fertility; Wheat growth
-
Autophagy promotes p72 degradation and capsid disassembly during the early phase of African swine fever virus infection
作者:Song, Jie;Li, Jiangnan;Li, Shuai;Zhao, Gaihong;Li, Tingting;Chen, Xin;Liu, Jia;Lai, Xinyu;Liu, Sitong;Zhou, Qiongqiong;Huang, Li;Weng, Changjiang;Li, Jiangnan;Li, Tingting;Huang, Li;Weng, Changjiang;Hu, Boli
关键词:African swine fever virus; p72; selective autophagy; Stub1; HSPA8; capsid disassembly
-
Impact of incorporating wheat straw together with basal nitrogen ratio on panicle formation and grain yield in rice
作者:Qin, Li;Zhou, Shenqi;Liu, Lijun;Zhao, Hong;Liu, Kun;Wang, Chenyu
关键词:Grain yield; Straw incorporation; Nitrogen fertilizer; Spikelet differentiation and degeneration; Rice
-
Roles and Regulations of Acid Invertases in Plants: Current Knowledge and Future Perspectives
作者:Liu, Jia;Cheng, Yuan;Ruan, Meiying;Ye, Qingjing;Wang, Rongqing;Yao, Zhuping;Zhou, Guozhi;Li, Zhimiao;Liu, Chenxu;Wan, Hongjian;Liu, Jia;Wan, Hongjian
关键词:acid invertases (Ac-Invs); plant physiology; hormonal regulation; environmental stress responses