Combined Salicyclic Acid and Ultrasound Treatments for Reducing the Chilling Injury on Peach Fruit
文献类型: 外文期刊
第一作者: Yang, Zhenfeng
作者: Yang, Zhenfeng;Yang, Zhenfeng;Jiang, Yueming;Cao, Shifeng;Zheng, Yonghua
作者机构:
关键词: Peach;salicylic acid;ultrasound;chilling injury;antioxidant enzymes
期刊名称:JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY ( 影响因子:5.279; 五年影响因子:5.269 )
ISSN:
年卷期:
页码:
收录情况: SCI
摘要: The effects of salicylic acid (SA; 1 mmol L~(-1)) and ultrasound treatment (40 kHz, 10 min) either separately or combined on the chilling injury (CI) in cold-stored peach fruit (Prunus persica Batsch cv, Baifeng) were investigated. The results showed that SA treatment alone alleviated CI during storage. Ultrasound alone had no influence, but when it was combined with SA, it resulted in greater inhibition of CI than SA alone. The activities of antioxidant enzymes, such as catalase, ascorbate peroxidase, monodehydroascorbate reductase, dehydroascorbate reductase, and glutathione reductase, were induced by a combination of SA with ultrasound. In addition, the combined treatment also increased the endogenous SA concentrations in peaches. These results suggested that the induced tolerance against CI by the combination of ultrasound and SA treatment in cold-stored peach fruit was related to the induction of antioxidant enzymes and the increase in the SA concentration.
分类号: R15
- 相关文献
作者其他论文 更多>>
-
VOZ-dependent priming of salicylic acid-dependent defense against Rhizopus stolonifer by β-aminobutyric acid requires the TCP protein TCP2 in peach fruit
作者:Wang, Kaituo;Li, Chunhong;Ji, Nana;Zou, Yanyu;Zheng, Yonghua;Wang, Kaituo;Li, Chunhong;Lei, Changyi;Zou, Yanyu;Tan, Meilin;Wang, Jinsong;Wang, Kaituo;Gao, Haiyan;Cao, Shifeng
关键词:beta-aminobutyric acid; vascular plant one-zinc finger; TEOSINTE-BRANCHED1/CYCLOIDEA/PCF; priming;
Rhizopus rot;Prunus persica -
Sucrose induces BoVDAC2 expression to preserve mitochondrial function and mitigate programmed cell death in broccoli
作者:Luo, Min;Chen, Jiahui;Guo, Xintong;Qian, Yuan;Jiao, Wenhui;Chen, Yi;Wei, Yingying;Shao, Xingfeng;Xu, Feng;Cao, Shifeng;Chen, Hangjun
关键词:Broccoli; PCD; VDAC; Mitochondria; BY-2 cells; Oxidative stress
-
H2S treatment alleviates postharvest chilling injury in green pepper by regulating antioxidant capacity, osmotic regulation and lipid metabolism to maintain cell membrane integrity
作者:Zhao, Liangyi;Lu, Yixia;Zhao, Yaqin;Bao, Yinqiu;Liu, Yu;Wu, Zhengguo;Zheng, Yonghua;Jin, Peng;Han, Yanchao;Chen, Hangjun
关键词:Green pepper; Chilling injury; Hydrogen sulfide; Antioxidant capacity; Membrane lipid metabolism; S-sulfhydration
-
Transcriptome-wide N6-methyladenosinem modifications analysis of growth and fumonisins production in Fusarium proliferatum causing banana crown rot
作者:Xie, Lihong;Ren, Yanling;Yang, Qiuxiao;Qu, Hongxia;Li, Taotao;Jiang, Yueming;Feng, Linyan;Ren, Yanling;Yang, Qiuxiao;Xie, Lihong
关键词:Fruit; RNA methylation; m6A; Fungus; Mycotoxin; Reactive oxygen species
-
Hot water treatment enhances mandarin fruit resistance to Penicillium italicum via histone H3K9 and H3K36 methylation modification
作者:Peng, Jiechun;Duan, Xiaoyan;Liang, Hanzhi;Jiang, Yueming;Duan, Xuewu;Peng, Jiechun;Duan, Xiaoyan;Liang, Hanzhi;Jiang, Yueming;Duan, Xuewu;Peng, Jiechun;Duan, Xiaoyan;Liang, Hanzhi;Jiang, Yueming;Duan, Xuewu;Duan, Xuewu;Garcia-Caparros, Pedro
关键词:Blue mold; Hot water treatment; Histone methylation; Mandarin
-
The regulation of Cytochrome f by mannose treatment in broccoli and its relationship with programmed cell death in tobacco BY-2 cells
作者:Zhao, Shiyi;Chen, Jiahui;Wang, Hongfei;Wei, Yingying;Chen, Yi;Shao, Xingfeng;Xu, Feng;Cao, Shifeng;Chen, Hangjun
关键词:Mannose; Broccoli; Cytochrome f; Programmed cell death; Tobacco BY-2 cells
-
Hydrogen sulfide alleviates chilling injury of zucchini fruit by regulating antioxidant capacity, endogenous hydrogen sulfide, proline, and polyamine metabolism
作者:Yi, Binghan;Liu, Yu;Wu, Zhengguo;Zheng, Yonghua;Chen, Hangjun;Jin, Peng;Chen, Hangjun
关键词:Zucchini fruit; Chilling injury; Hydrogen sulfide; Antioxidant capacity; Proline metabolism; Polyamines metabolism