The metabolomics variations among rice, brown rice, wet germinated brown rice, and processed wet germinated brown rice

被引:1
|
作者
Ren Chuan-ying [1 ,2 ]
Lu Shu-wen [2 ]
Guan Li-jun [2 ]
Hong Bin [2 ]
Zhang Ying-lei [2 ]
Huang Wen-gong [3 ]
Li Bo [2 ]
Liu Wei [4 ]
Lu Wei-hong [1 ]
机构
[1] Harbin Inst Technol, Sch Chem & Chem Engn, Harbin 150000, Peoples R China
[2] Heilongjiang Acad Agr Sci, Food Proc Res Inst, Harbin 150086, Peoples R China
[3] Heilongjiang Acad Agr Sci, Safety & Qual Inst Agr Prod, Harbin 150086, Peoples R China
[4] Harbin Med Univ, Affiliated Hosp 2, Harbin 150000, Peoples R China
关键词
brown rice; germination; metabolomics; metabolic pathway; high temperature and pressure; PHENOLIC-COMPOUNDS; METABOLISM; FLAVONOIDS; PYRIMIDINE; NUTRITION; ENHANCE; PATHWAY; PURINE; BREAD; FLOUR;
D O I
10.1016/j.jia.2022.07.025
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Germination and processing are always accompanied by significant changes in the metabolic compositions of rice. In this study, polished rice (rice), brown rice, wet germinated brown rice (WGBR), high temperature and pressure-treated WGBR (WGBR-HTP), and low temperature-treated WGBR (WGBR-T18) were enrolled. An untargeted metabolomics assay isolated 6 122 positive ions and 4 224 negative ions (multiple difference >= 1.2 or <= 0.8333, P<0.05, and VIP >= 1) by liquid chromatography-mass spectrum. These identified ions were mainly classified into three categories, including the compounds with biological roles, lipids, and phytochemical compounds. In addition to WGBR-T18 vs. WGBR, massive differential positive and negative ions were revealed between rice of different forms. Flavonoids, fatty acids, carboxylic acids, and organoxygen compounds were the dominant differential metabolites. Based on the Kyoto Encyclopedia of Genes and Genomes (KEGG) database, there 7 metabolic pathways (phenylalanine/tyrosine/tryptophan biosynthesis, histidine metabolism, betalain biosynthesis, C5-branched dibasic acid metabolism, purine metabolism, zeatin biosynthesis, and carbon metabolism) were determined between brown rice and rice. Germination changed the metabolic pathways of porphyrin and chlorophyll, pyrimidine, and purine metabolisms in brown rice. In addition, phosphonate and phosphinate metabolism, and arachidonic acid metabolism were differential metabolic pathways between WGBR-HTP and WGBR-T18. To sum up, there were obvious variations in metabolic compositions of rice, brown rice, WGBR, and WGBR-HTP. The changes of specific metabolites, such as flavonoids contributed to the antioxidant, anti-inflammatory, anti-cancer, and immunomodulatory effects of GBR. HTP may further improve the nutrition and storage of GBR through influencing specific metabolites, such as flavonoids and fatty acids.
引用
收藏
页码:2767 / 2776
页数:10
相关论文
共 50 条
  • [21] Improvement of germinated brown rice quality with autoclaving treatment
    Ren, Chuanying
    Hong, Bin
    Zheng, Xianzhe
    Wang, Liqun
    Zhang, Yinglei
    Guan, Lijun
    Yao, Xinmiao
    Huang, Wengong
    Zhou, Ye
    Lu, Shuwen
    FOOD SCIENCE & NUTRITION, 2020, 8 (03): : 1709 - 1717
  • [22] Germinated Brown Rice and Its Role in Human Health
    Wu, Fengfeng
    Yang, Na
    Toure, Alhassane
    Jin, Zhengyu
    Xu, Xueming
    CRITICAL REVIEWS IN FOOD SCIENCE AND NUTRITION, 2013, 53 (05) : 451 - 463
  • [23] Morphological, Thermal, and Rheological Properties of Starch from Brown Rice and Germinated Brown Rice from Different Cultivars
    Pal, Priyanka
    Kaur, Parmeet
    Singh, Narpinder
    Kaur, Amritpal
    Inouchi, Naoyoshi
    Kubota, Yuka
    STARCH-STARKE, 2023, 75 (3-4):
  • [24] Comparison of Composition, Protein, Pasting, and Phenolic Compounds of Brown Rice and Germinated Brown Rice from Different Cultivars
    Pal, Priyanka
    Singh, Narpinder
    Kaur, Parmeet
    Kaur, Amritpal
    Virdi, Amardeep Singh
    Parmar, Naincy
    CEREAL CHEMISTRY, 2016, 93 (06) : 584 - 592
  • [25] Effects of germinated brown rice and germinated black rice on people with type 2 diabetes mellitus combined with dyslipidaemia
    Zhao, Fengyi
    Ren, Chuanying
    Li, Lihua
    Huang, Chao
    Zhao, Qing
    Zhong, Yulian
    Hu, Qiaosheng
    Liao, Wang
    Xia, Hui
    Yang, Ligang
    Wang, Shaokang
    Sun, Guiju
    FOOD & FUNCTION, 2024, 15 (12) : 6642 - 6656
  • [26] Comparative study on the modulation of IgE and cytokine production by Phellinus linteus grown on germinated brown rice, Phellinus linteus and germinated brown rice in murine splenocytes
    Lim, BO
    Yamada, K
    Cho, BG
    Jeon, T
    Hwang, SG
    Park, T
    Kang, SA
    Park, DK
    BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 2004, 68 (11) : 2391 - 2394
  • [27] Effect of Soaking Time and Method on GABA Content and Brown Rice Quality in the Soaking Process of Paddy for Germinated Brown Rice
    Pilawut, Sirorat
    Chinsuwan, Winit
    2015 INTERNATIONAL CONFERENCE ON MATERIALS AND ENGINEERING AND INDUSTRIAL APPLICATIONS (MEIA 2015), 2015, : 104 - 108
  • [28] Antioxidant activity of white rice, brown rice and germinated brown rice (in vivo and in vitro) and the effects on lipid peroxidation and liver enzymes in hyperlipidaemic rabbits
    Esa, Norhaizan Mohd
    Kadir, Khairul-Kamilah Abdul
    Amom, Zulkhairi
    Azlan, Azrina
    FOOD CHEMISTRY, 2013, 141 (02) : 1306 - 1312
  • [29] A bioaccessible fraction of parboiled germinated brown rice exhibits a higher anti-inflammatory activity than that of brown rice
    Tuntipopipat, Siriporn
    Muangnoi, Chawanphat
    Thiyajai, Parunya
    Srichamnong, Warangkana
    Charoenkiatkul, Somsri
    Praengam, Kemika
    FOOD & FUNCTION, 2015, 6 (05) : 1480 - 1488
  • [30] Nutrigenomic effects of germinated brown rice bioactives on antioxidant genes
    Imam, M. U.
    Ismail, M.
    Omar, A. R.
    FREE RADICAL BIOLOGY AND MEDICINE, 2012, 53 : S106 - S106