The study of analytical identification on main monomer compounds of spoiled grass carp by high-performance liquid chromatography of quadrupole time of flight mass spectrometry

文献类型: 外文期刊

第一作者: Zhang, Yousheng

作者: Zhang, Yousheng;Huang, Jiasi;Liu, Xueming;Cheng, Jingrong;Chen, Zhiyi;Zhang, Yehui

作者机构:

关键词: analytical identification;chemical compounds;grass carp;high-performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry (HPLC-Q-TOF MS);spoiled

期刊名称:JOURNAL OF FOOD PROCESSING AND PRESERVATION ( 影响因子:2.19; 五年影响因子:2.271 )

ISSN: 0145-8892

年卷期: 2017 年 41 卷 6 期

页码:

收录情况: SCI

摘要: The main monomer compounds from spoiled Grass carp (Ctenopharyngodon Idellus) were analyzed and deduced using high-performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry (HPLC-Q-TOF-MS). Forty-six kinds of monomer compounds were determined in spoiled Grass carp, including 3 kinds of non-nitrogenous compounds and 43 nitrogenous compounds. Forty-three nitrogenous compounds including 6 kinds of amino acids (2 kinds of -amino acids), 10 kinds of amines, 12 kinds of amide compounds, 2 kinds of nitro compounds, 12 kinds of heterocyclic nitrogenous compounds, and 1 kind of nitriles compound. The results indicated that the quantity and chemical structure of main monomer compounds of Grass carp were significantly changed during the spoiled process. Practical applicationsStructure of monomer compounds in fresh and perishable materials can be inferred and identificated by HPLC-Q-TOF-MS. They can be used to increase efficiency in identification and analysis of chemical component. It will be benefit for identification, evolution, and deduction of active ingredients and new compounds of fresh material in preservation.

分类号:

  • 相关文献

[1]Flavor characteristics and chemical compositions of oolong tea processed using different semi-fermentation times. Liu, Pan-Pan,Yin, Jun-Feng,Chen, Gen-Sheng,Wang, Fang,Xu, Yong-Quan,Liu, Pan-Pan. 2018

[2]Isolation, purification and identification of nine chemical compounds from Flammulina velutipes fruiting bodies. Cai, Hehui,Liu, Xueming,Chen, Zhiyi,Liao, Sentai,Zou, Yuxiao.

[3]Fenugreek (Trigonella foenum-graecum L.) seed: a review of physiological and biochemical properties and their genetic improvement. Zandi, Peiman,Basu, Saikat Kumar,Khatibani, Leila Bazrkar,Balogun, Morufat Oladimeji,Aremu, Matthew Olaleke,Sharma, Manorma,Kumar, Ashwin,Sengupta, Ratnabali,Li, Xianping,Li, Yanshan,Tashi, Sonam,Hedi, Abdouli,Cetzal-Ix, William.

[4]Determination of flavomycin residue in grass carp by high performance liquid chromatography. Tian Liang-liang,Huang Dong-mei,Shi Yong-fu,Han Feng,Zhou Peng. 2015

[5]Molecular cloning and expression of grass carp MyoD in yeast Pichia pastoris. Wang, Lixin,Bai, Junjie,Luo, Jianren,Chen, Hong,Ye, Xing,Jian, Qing,Lao, Haihua. 2007

[6]Isolation, Identification, and Detection, of the Virulence Factor of Vibrio cholerae in Grass Carp. Teng, Tao,Liang, Liguo,Xie, Jun. 2015

[7]Effects of processing method and dietary lysine levels on growth performance, feed conversion ratio and body composition of grass carp, Ctenopharyngodon idella. Gan, Lian,Gan, Lian,Liu, Yong-Jian,Tian, Li-Xia,Liu, Fu-Jia,Yang, Hui-Jun,Chen, Yong-Jun,Liang, Gui-Yin,Yue, Yi-Rong. 2015

[8]Respiratory response of grass carp Ctenopharyngodon idellus to dissolved oxygen changes at three acclimation temperatures. Zhao, Zhigang,Xu, Qiyou,Dong, Shuanglin. 2018

[9]Occurrence of Bothriocephalus acheilognathi (Cestoda, Bothriocephallidea) in grass carp Ctenopharyngodon idella in the Changjiang River drainage. Wang Guitang,Wang Guitang,Xi Bingwen,Xie Jun. 2011

[10]The distribution of different virulence grass carp reovirus strains in some neglected tissues. Liang, H. R.,Fu, X. Z.,Li, N. Q.,Liu, L. H.,Lin, Q.,Li, Y. G.,Peng, Y. A.,Huang, Z. B.,Wu, S. Q.,Liang, H. R.,Li, N. Q.,Liu, L. H.,Lin, Q..

[11]Identification and characterization of Bacillus subtilis from grass carp (Ctenopharynodon idellus) for use as probiotic additives in aquatic feed. Guo, Xia,Chen, Dan-Dan,Peng, Kai-Song,Cui, Zheng-Wei,Zhang, Xu-Jie,Li, Shun,Zhang, Yong-An,Guo, Xia,Peng, Kai-Song,Cui, Zheng-Wei,Zhang, Xu-Jie.

[12]Development and efficacy of a novel streptomycin-resistant Flavobacterium johnsoniae vaccine in grass carp (Ctenopharyngodon idella). Li, Ningqiu,Lin, Qiang,Fu, Xiaozhe,Guo, Huizhi,Liu, Lihui,Wu, Shuqin,Li, Ningqiu,Li, Ningqiu,Lin, Qiang,Fu, Xiaozhe,Guo, Huizhi,Liu, Lihui,Wu, Shuqin.

[13]Silymarin inhibits adipogenesis in the adipocytes in grass carp Ctenopharyngodon idellus in vitro and in vivo. Xiao, Peizhen,Yang, Zhou,Sun, Jian,Tian, Jingjing,Chang, Zhiguang,Li, Xuexian,Ji, Hong,Zhang, Baotong,Ye, Yuantu,Yu, Ermeng,Xie, Jun.

[14]Effect of heat stress and recovery on viability, oxidative damage, and heat shock protein expression in hepatic cells of grass carp (Ctenopharyngodon idellus). Cui, Yanting,Liu, Bo,Xie, Jun,Xu, Pao,Habte-Tsion, H-Michael,Zhang, Yuanyuan,Cui, Yanting,Liu, Bo,Xie, Jun,Xu, Pao,Habte-Tsion, H-Michael,Zhang, Yuanyuan.

[15]Dietary supplementation of sodium butyrate may benefit growth performance and intestinal function in juvenile grass carp (Ctenopharyngodon idellus). Liu, Mengmei,Guo, Wei,Wu, Fan,Qu, Qicai,Tan, Qingsong,Gong, Wangbao.

[16]Cytotoxic effects and apoptosis induction of enrofloxacin in hepatic cell line of grass carp (Ctenopharyngodon idellus). Liu, Bo,Ge, Xianping,Xie, Jun,Xu, Pao,Liu, Bo,Cui, Yanting,Ge, Xianping,Xie, Jun,Xu, Pao,Brown, Paul B..

[17]Molecular cloning and gene/protein expression of FAT/CD36 from grass carp (Ctenopharyngodon idella) and the regulation of its expression by dietary energy. Tian, Juan,Liu, Wei,Wu, Fan,Yu, Lijuan,Lu, Xing,Yang, Chang-Geng,Jiang, Ming,Wen, Hua,Tian, Juan,Jiang, Ming,Gao, Weihua.

[18]Effect of Ultrastructure on Changes of Textural Characteristics between Crisp Grass Carp (Ctenopharyngodon Idellus C.Et V) and Grass Carp (Ctenopharyngodon Idellus) Inducing Heating Treatment. Lin, Wan-Ling,Yang, Xian-Qing,Li, Lai-Hao,Hao, Shu-Xian,Wang, Jin-Xu,Huang, Hui,Wei, Ya,Wu, Yan-Yan.

[19]Oral delivery of Bacillus subtilis spores expressing cysteine protease of Clonorchis sinensis to grass carp (Ctenopharyngodon idellus): Induces immune responses and has no damage on liver and intestine function. Tang, Zeli,Sun, Hengchang,Chen, TingJin,Lin, Zhipeng,Jiang, Hongye,Zhou, Xinyi,Ren, Pengli,Yu, Jinyun,Li, Xuerong,Xu, Jin,Huang, Yan,Yu, Xinbing,Tang, Zeli,Sun, Hengchang,Chen, TingJin,Lin, Zhipeng,Jiang, Hongye,Zhou, Xinyi,Ren, Pengli,Yu, Jinyun,Li, Xuerong,Xu, Jin,Huang, Yan,Yu, Xinbing,Tang, Zeli,Sun, Hengchang,Chen, TingJin,Lin, Zhipeng,Jiang, Hongye,Zhou, Xinyi,Ren, Pengli,Yu, Jinyun,Li, Xuerong,Xu, Jin,Huang, Yan,Yu, Xinbing,Shi, Cunbin,Pan, Houjun,Chang, Ouqin.

[20]Genome-wide identification and characterization of conserved and novel microRNAs in grass carp (Ctenopharyngodon idella) by deep sequencing. Gong, Wangbao,Xie, Jun,Wang, Guangjun,Yu, Deguang,Huang, Yong,Sun, Xihong.

作者其他论文 更多>>