Page 97 - 《水产学报》2025年第10期
P. 97

孙克龙,等                                                                水产学报, 2025, 49(10): 109607

                    55-59.                                          源胆汁酸代谢以及     CyHV-2  免疫保护作用的影响  [D]. 苏州:
                    Yu M H, Dong Y Z, Lai Z W, et al. Effects of different bile  苏州大学, 2018.
                    acids on growth performance, serum biochemical indexes and  He J. The effects of bile acids supplementation on the growth,
                    lipid metabolical indexes of spotted seabass (Lateolabrax macu-  oxidative damage repair, endogenous bile acid metabolism, and
                    latus)[J]. Feed Industry, 2021, 42(2): 55-59 (in Chinese).  cyhv-2  immune  protection  of  allogyogenetics  silver  crucian
              [16]   周书耘, 刘永坚, 梁海鸥, 等. 饲料中添加胆汁酸对军曹鱼生                carp  Carassius  auratus  gibelio[D]. Suzhou:  Soochow   Uni-
                    长及体组成的影响    [J]. 南方水产科学, 2010, 6(4): 20-25.     versity, 2018 (in Chinese).
                    Zhou S Y, Liu Y J, Liang H O, et al. Effect of bile acids on  [25]   Hofmann A F, Hagey L R, Krasowski M D. Bile salts of verteb-
                    growth  and  body  composition  of  cobia  (Rachycentron  rates: structural  variation  and  possible  evolutionary   signific-
                    canadum)[J]. South China Fisheries Science, 2010, 6(4): 20-25  ance[J]. Journal of Lipid Research, 2010, 51(2): 226-246.
                    (in Chinese).                             [26]   Kortner T M, Penn M H, Bjӧrkhem I, et al. Bile components
              [17]   毕清竹, 梁萌青, 廖章斌, 等. 饲料中胆汁酸对红鳍东方鲀脂                and lecithin supplemented to plant based diets do not diminish
                    肪酸组成及抗氧化能力的影响       [J]. 上海海洋大学学报, 2020,        diet related intestinal inflammation in Atlantic salmon[J]. BMC
                    29(6): 829-839.                                 Veterinary Research, 2016, 12(1): 190.
                    Bi Q Z, Liang M Q, Liao Z B, et al. Effect of dietary bile acid  [27]   Johnson  M  R,  Barnes  S,  Kwakye  J  B,  et  al.  Purification  and
                    supplementation  on  fatty  acid  composition  and  anti-oxidative  characterization  of  bile  acid-CoA:  amino  acid  N-acyltrans-
                    capacity of tiger puffer Takifugu rubripes[J]. Journal of Shang-  ferase  from  human  liver[J].  Journal  of  Biological  Chemistry,
                    hai Ocean University, 2020, 29(6): 829-839 (in Chinese).  1991, 266(16): 10227-10233.
              [18]   Luo  Y,  Li  M,  Wang  T,  et  al.  Bacillus  cereus  alters  bile  acid  [28]   Kim S K, Takeuchi T, Akimoto A, et al. Effect of taurine sup-
                    composition and alleviates high-carbohydrate diet-induced hep-  plemented  practical  diet  on  growth  performance  and  taurine
                    atic  lipid  accumulation  in  Nile  tilapia  (Oreochromis  contents  in  whole  body  and  tissues  of  juvenile  Japanese
                    niloticus)[J]. Journal of Agricultural and Food Chemistry, 2023,  flounder  Paralichthys  olivaceus[J].  Fisheries  Science,  2005,
                    71(12): 4825-4836.                              71(3): 627-632.
              [19]   Chen S Y, Lin Y, Miao L H, et al. Ferulic acid alleviates lipo-  [29]   Cao X M, Ren S J, Cai C F, et al. Dietary pectin caused great
                    polysaccharide-induced  acute  liver  injury  in  Megalobrama  changes in bile acid profiles of Pelteobagrus fulvidraco[J]. Fish
                    amblycephala[J]. Aquaculture, 2021, 532: 735972.  Physiology and Biochemistry, 2021, 47(6): 2015-2025.
              [20]   Zhou C, Liu B, Ge X, et al. Effect of dietary carbohydrate on  [30]   Hagey L R, Lida T, Tamegai H, et al. Major biliary bile acids of
                    the growth performance, immune response, hepatic antioxidant  the Medaka (Oryzias latipes): 25R- and 25S-epimers of 3α, 7α,
                    abilities  and  heat  shock  protein  70  expression  of  Wuchang  12α-trihydroxy-5β-cholestanoic  acid[J].  Zoological  Science,
                    bream, Megalobrama amblycephala[J]. Journal of Applied Ich-  2010, 27(7): 565-573.
                    thyology, 2013, 29(6): 1348-1356.         [31]   Kim S K, Kim K G, Kim K D, et al. Effect of dietary taurine
              [21]   Li  X  F,  Wang  Y,  Liu  W  B,  et  al.  Effects of  dietary   carbo-  levels  on  the  conjugated  bile  acid  composition  and  growth  of
                    hydrate/lipid ratios on growth performance, body composition  juvenile  Korean  rockfish  Sebastes  schlegeli  (Hilgendorf)[J].
                    and glucose metabolism of fingerling blunt snout bream Mega-  Aquaculture Research, 2015, 46(11): 2768-2775.
                    lobrama amblycephala[J]. Aquaculture Nutrition, 2013, 19(5):  [32]   Vessey D A. The biochemical basis for the conjugation of bile
                    701-708.                                        acids  with  either  glycine  or  taurine[J].  Biochemical  Journal,
              [22]   张晶, 李文祥, 邹红, 等. 草鱼不同组织胆汁酸组成分析      [J].        1978, 174(2): 621-626.
                    水生生物学报, 2017, 41(2): 479-482.             [33]   Li K, Buchinger T J, Bussy U, et al. Quantification of 15 bile
                    Zhang J, Li W X, Zou H, et al. An analysis of bile acid compos-  acids in lake charr feces by ultra-high performance liquid chro-
                    ition in different tissues of grass carp (Ctenopharyngodon idel-  matography–tandem mass spectrometry[J]. Journal of Chroma-
                    lus)[J].  Acta  Hydrobiologica  Sinica,  2017,  41(2):  479-482  (in  tography B, 2015, 1001: 27-34.
                    Chinese).                                 [34]   Wang H Y, Yeh C Y, Li K, et al. An UPLC-MS/MS method for
              [23]   Wei X, Yao T, Fall F N, et al. An integrated bile acids profile  quantitative profiling of bile acids in sea lamprey plasma and
                    determination by UHPLC-MS/MS to identify the effect of bile  tissues[J]. Journal of Chromatography B, 2015, 980: 72-78.
                    acids  supplement  in  high  plant  protein  diet  on  common  carp  [35]   王朋, 林森, 吴德, 等. 胆汁酸的营养生理作用及代谢调控研
                    (Cyprinus carpio)[J]. Foods, 2021, 10(10): 2465.  究进展  [J]. 动物营养学报, 2019, 31(5): 2002-2011.
              [24]   何杰. 饲料添加胆汁酸对异育银鲫生长、氧化损伤修复、内                    Wang  P,  Lin  S,  Wu  D,  et  al.  Recent  progress  in  nutrition

              中国水产学会主办  sponsored by China Society of Fisheries                          https://www.china-fishery.cn
                                                            11
   92   93   94   95   96   97   98   99   100   101   102