Epibrassinolide enhanced chilling tolerance of postharvest banana fruit by regulating energy status and pyridine nucleotide homeostasis
文献类型: 外文期刊
第一作者: Li, Dong
作者: Li, Dong;Wu, Xiaohan;Li, Li;Xu, Yanqun;Luo, Zisheng;Wang, Yansheng;Xu, Yanqun;Luo, Zisheng;Luo, Zisheng
作者机构:
关键词: Epibrassinolide; Banana fruit; Chilling; Energy metabolism; Pyridine nucleotide homeostasis
期刊名称:FOOD CHEMISTRY ( 影响因子:7.514; 五年影响因子:7.516 )
ISSN: 0308-8146
年卷期: 2022 年 382 卷
页码:
收录情况: SCI
摘要: Chilling injury occurs in banana fruit under cold storage, which decreases commercial value and limits the shelf life. Here, exogenous epibrassinolide was applied to investigate its regulation on chilling tolerance. The results found 2.5 mu mol/L epibrassinolide was the optimal concentration to reduce chilling injury, which showed 23% lower chilling injury index compared with the control. Epibrassinolide alleviated the symptoms of chilling injury, including maintaining total chlorophyll, as well as reducing browning index, electrolyte leakage, and MDA. Energy status assay showed 7% higher energy charge was observed in epibrassinolide-treated fruit, which was due to the increase of SDH, CCO, and NADH/NAD(+)& nbsp;ratio. In addition, the activation of NADK and PPP pathway induced the increase of NADPH and NADPH/NADP(+) ratio, which inhibited H2O2 accumulation and O-2(.)- production rate, and thus alleviated chilling injury. This study clarified the potential regulation of epibrassinolide on the balance of energy metabolism and pyridine nucleotide homeostasis.
分类号:
- 相关文献
作者其他论文 更多>>
-
The combination of metabolome and transcriptome clarifies the inhibition of the Alternaria toxin accumulation by methyl ferulate
作者:Ge, Shuai;Xie, Ying;Ding, Ke;Xu, Saiqing;Xu, Haishan;Chang, Xia;Shan, Yang;Ding, Shenghu;Ge, Shuai;Xie, Ying;Ding, Ke;Xu, Saiqing;Xu, Haishan;Chang, Xia;Li, Huan;Shan, Yang;Ding, Shenghu;Wang, Rongrong;Luo, Zisheng
关键词:Alternaria alternata; Alternaria toxin; Methyl ferulate; Transcriptome; Metabolome
-
Data-driven Bayesian Gaussian mixture optimized anchor box model for accurate and efficient detection of green citrus
作者:Zhang, Yunfeng;Li, Li;Wen, Yifeng;Zhang, Yunfeng;Li, Li;Chun, Changpin;Li, Congbo;Xu, Gang
关键词:Green citrus; Efficient detection; Bayesian Gaussian Mixture Model; Lightweight; Harvesting Equipment
-
Integrative omics analyses of tea (Camellia sinensis) under glufosinate stress reveal defense mechanisms: A trade-off with flavor loss
作者:Yu, Huan;Miao, Peijuan;Zhou, Chunran;Cheng, Haiyan;Dong, Qinyong;Pan, Canping;Li, Dong;Wu, Yangliu;Zhao, Yingjie;Liu, Zhusheng;Zhao, Yingjie;Zhou, Li
关键词:Tea; Glufosinate; Transcriptome; Metabolomic; Quality
-
Loss of function of OsL1 gene cause early flowering in rice under short-day conditions
作者:Li, Lei;Dong, Hao;Qiu, Yingxin;Li, Li;Qiu, Mudan;Xia, Siqi;Gong, Mengmeng;Wang, Jianlong;Song, Shufeng;Li, Yixing;Wang, Tiankang;Yang, Hanshu;Li, Li;Zhang, Longhui
关键词:Rice; Heading date; RNA-seq; OsL1; Hd1-Hd3a
-
Polyvinyl alcohol films incorporated with clove essential oil emulsions stabilized by soy protein isolate-derived amyloid fibrils: Fabrication, characterization, and its application for active packaging
作者:Yang, Suhua;Ban, Zhaojun;Jin, Linxuan;Liu, Lingling;Chen, Cunkun;Li, Li;Yi, Guohui;Abdollahi, Mehdi;Liu, Lingling
关键词:Protein amyloid fibrils; Clove essential oil; Emulsion film; Active food packaging
-
A highly susceptible hACE2-transgenic mouse model for SARS-CoV-2 research
作者:Liu, Gang;Zhang, Min;Han, Xuelian;Wei, Yuwei;Sun, Yali;Cao, Xiangwen;Wang, Yuan;Li, Min;Zhao, Guangyu;Yin, Qi;Sun, Yansong;Wu, Baolei;Zhang, Cheng;Guo, Zhendong;Zhang, Cheng;Guo, Zhendong;Wang, Yan;Li, Li;Wang, Rongjuan;Li, Yalan;Sun, Yali;Cao, Xiangwen;Zhao, Guangyu;Ke, Yuehua
关键词:ACE2; inflammatory response; lung injury; mouse model; SARS-CoV-2
-
Integration of transcriptome and metabolome reveals the accumulation of related metabolites and gene regulation networks during quinoa seed development
作者:Wang, Qianchao;Liu, Junna;Zhang, Ping;Li, Li;Xie, Heng;Li, Hanxue;Wang, Hongxin;Qin, Peng;Shi, Jirong;Liu, Chenghong
关键词:Quinoa seeds,; Development period,; Transcriptome,; Metabolic group,; Regulatory network