Effects of live transport methods on the survivability, physiological responses, and flesh quality of turbot (Scophthalmus maximus)

被引:0
作者
Liu, Chune [1 ]
Lin, Aiqi [1 ]
Li, Zixuan [1 ]
Ma, Zheng [1 ]
Liu, Feng [1 ]
机构
[1] China Agr Univ, Yantai Inst, Yantai 264001, Shandong, Peoples R China
关键词
proteomic; stress; turbot; waterless transport; SALMON SALMO-SALAR; STRESS RESPONSES; OLIVE FLOUNDER; PARALICHTHYS-OLIVACEUS; WATERLESS PRESERVATION; EXPRESSION PATTERN; CRUCIAN CARP; AIR EXPOSURE; TEMPERATURE; GROWTH;
D O I
10.1002/efd2.70011
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Waterless transport is an alternative method for live aquatic products. However, the changes that occur in the fish body after transportation are not known. Herein, the effects of different transport methods on quality of turbot (Scophthalmus maximus) were investigated. Fish were divided into four groups: Group A (water, 17 degrees C), Group B (waterless, 3 degrees C), Group C (water, 3 degrees C), and Group D (control, 17 degrees C). In the case of 100% survival, the maximum transport time was 40 h for Group A, 55 h for Group B, and 90 h for Group C. Both crude protein and crude fat decreased significantly (p < 0.05) in the treatment groups compared with the control group. Compared with control group, lactic dehydrogenase (LDH), lactic acid (LA), and serum cortisol (COR) increased significantly (p < 0.05) in all treatment groups. After fish recovered, LDH, LA, and COR values were all significantly (p < 0.05) lower than their corresponding non-recovered group. Compared with the control group, the expression of proteins related to muscle motility and stress capacity both decreased in the low-temperature, waterless group. Together, obvious damage may occur to flesh quality, liver, and heart of turbot when the transport time is >40 h, regardless of the transport method.
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页数:13
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共 61 条
  • [1] Xylooligosaccharides benefits the growth, digestive functions and TOR signaling in Megalobrama amblycephala fed diets with fish meal replaced by rice protein concentrate
    Abasubong, Kenneth Prudence
    Liu, Wen-Bin
    Adjoumani, Yao Jean Jacques
    Xia, Si-Lei
    Xu, Chao
    Li, Xiang-Fei
    [J]. AQUACULTURE, 2019, 500 : 417 - 428
  • [2] Metabolic molecular indicators of chronic stress in gilthead seabream (Sparus aurata) using comparative proteomics
    Alves, Ricardo N.
    Cordeiro, Odete
    Silva, Tome S.
    Richard, Nadege
    de Vareilles, Mahaut
    Marino, Giovanna
    Di Marco, Patrizia
    Rodrigues, Pedro M.
    Conceicao, Luis E. C.
    [J]. AQUACULTURE, 2010, 299 (1-4) : 57 - 66
  • [3] Bai C., 2018, Food Science and Technology, V43, P128, DOI [10.13684/j.cnki.spkj.2018.04.025, DOI 10.13684/J.CNKI.SPKJ.2018.04.025]
  • [4] Effect of cold-anesthetization rate on blood biochemical parameters and muscle composition during live channel catfish Ictalurus punctatus waterless preservation
    Bai, Chan
    Xiong, Guangquan
    Xu, Ping
    Li, Ning
    Wang, Juguang
    Liao, Tao
    [J]. FISHERIES SCIENCE, 2020, 86 (06) : 1043 - 1053
  • [5] Changes in the liver transcriptome of farmed Atlantic salmon (Salmo salar) fed experimental diets based on terrestrial alternatives to fish meal and fish oil
    Caballero-Solares, Albert
    Xue, Xi
    Parrish, Christopher C.
    Foroutani, Maryam Beheshti
    Taylor, Richard G.
    Rise, Matthew L.
    [J]. BMC GENOMICS, 2018, 19
  • [6] Stable isotope labelling methods in mass spectrometry-based quantitative-proteomics
    Chahrour, Osama
    Cobice, Diego
    Malone, John
    [J]. JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 2015, 113 : 2 - 20
  • [7] Secondary stress responses in Indian major carps Labeo rohita (Hamilton), Catla catla (Hamilton) and Cirrhinus mrigala (Hamilton) fry to increasing packing densities
    Chatterjee, N
    Pal, AK
    Das, T
    Mohammed, MS
    Sarma, K
    Venkateshwarlu, G
    Mukherjee, SC
    [J]. AQUACULTURE RESEARCH, 2006, 37 (05) : 472 - 476
  • [8] Myo-inositol enhances the low-salinity tolerance of turbot (Scophthalmus maximus) by modulating cortisol synthesis
    Cui, Wenxiao
    Ma, Aijun
    Wang, Xinan
    Huang, Zhihui
    [J]. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2020, 526 (04) : 913 - 919
  • [9] Dai Yafan, 2024, Aquaculture and Fisheries, V9, P226, DOI 10.1016/j.aaf.2022.04.003
  • [10] Dai YJ, 2018, BRIT J NUTR, V120, P1422, DOI [10.1017/S000711451800288X, 10.1017/s000711451800288x]