Page 45 - 《水产学报》2025年第10期
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孙倩文,等                                                                水产学报, 2025, 49(10): 109603

                    tion, 2014, 20: 741-752.                        matory reaction and oxidation resistance of grass carp, Cteno-
              [  3  ]   Liang H L, Ren M C, Habte-Tsion H M, et al. Dietary methion-  pharyngodon  idella,  fry[J].  Fish  &  Shellfish  Immunology,
                    ine requirement of pre-adult blunt snout bream, (Megalobrama  2022, 128: 389-397.
                    amblycephala  Yih,  1955)[J].  Journal  of  Applied  Ichthyology,  [13]   Hu Y J, Cai M, Zhong H, et al. Methionine–mediated regula-
                    2016, 32: 1171-1178.                            tion of intestinal structure and lipid transport in the rice field eel
              [  4  ]   Li  P,  Yin  Y  L,  Li  D,  et  al.  Amino  acids  and  immune  (Monopterus albus)[J]. Aquaculture Nutrition, 2022, 2293484.
                    function[J]. British Journal of Nutrition, 2007, 98: 237-252.  [14]   李诗洋, 陈晓瑛, 梁浩辉, 等. 饲料蛋氨酸水平对大口黑鲈稚
              [  5  ]   Wu  G.  Amino  acids:  metabolism,  functions,  and  nutrition[J].  鱼生长性能、消化能力和免疫抗氧化能力的影响  [J]. 上海
                    Amino Acids, 2009, 37: 1-17.                    海洋大学学报, 2025, 34(4): 749-759.
              [  6  ]   Ren M, Liang H, He J, et al. Effects of DL-methionine supple-  Li S Y, Chen X Y, Liang H H, et al. Effects of dietary methion-
                    mentation on the success of fish meal replacement by plant pro-  ine  levels  on  growth  performance,  antioxidant  capacity  and
                    teins in practical diets for juvenile gibel carp (Carassius auratus  intestinal  development  of  juvenile  largemouth  bass  (Microp-
                    gibelio)[J]. Aquaculture Nutrition, 2017, 23: 934-941.  terus  salmoides)[J].  Journal  of  Shanghai  Ocean  University,
              [  7  ]   李守柱. 不同蛋氨酸水平对鲤鱼生长性能的影响     [J]. 江西水         2025, 34(4): 749-759 (in Chinese).
                    产科技, 2022(2): 45-47.                      [15]   Salze G P, Davis D A. Taurine: A critical nutrient for future fish
                    Li  S  Z.  Effects of  different  methionine  levels  on  growth   per-  feeds[J]. Aquaculture, 2015, 437: 215-229.
                    formance of carp[J]. Jiangxi Fishery Science and Technology,  [16]   范泽, 李正伟, 刘庆武, 等. 水产动物牛磺酸营养研究进展  [J].
                    2022(2): 45-47 (in Chinese).                    饲料工业, 2022, 43(20): 47-52.
              [  8  ]   马俊, 魏泽宏, 邢淑娟, 等. 饲料中添加蛋氨酸寡肽对大黄鱼             Fan Z, Li Z W, Liu Q W, et al. The research progress of taurine
                    (Larimichthys crocea) 生长、饲料利用和蛋白质代谢反应的          nutrition in aquatic animals[J]. Feed Industry, 2022, 43(20): 47-
                    影响  [J]. 渔业科学进展, 2016, 37(3): 126-133.          52 (in Chinese).
                    Ma  J,  Wei  Z  H,  Xing  S  J,  et  al.  Effects  of  dietary  oligo-  [17]   Baliou S, Adamaki M, Ioannou P, et al. Protective role of taur-
                    methionine on the growth performance, feed utilization and pro-  ine  against  oxidative  stress  (Review)[J].  Molecular  Medicine
                    tein  metabolism  responses  of  juvenile  large  yellow  croaker  Reports, 2021, 24: 1-19.
                    (Larimichthys  crocea)[J].  Progress  in  Fishery  Sciences,  2016,  [18]   Al–Feky S S A, El–Sayed A F M, Ezzat A A. Dietary taurine
                    37(3): 126-133 (in Chinese).                    enhances  growth  and  feed  utilization  in  larval  Nile  tilapia
              [  9  ]   Hoseini S M, Hosseini S A, Eskandari S, et al. Effect of dietary  (Oreochromis  niloticus)  fed  soybean  meal–based  diets[J].
                    taurine and  methionine  supplementation  on  growth   perform-  Aquaculture Nutrition, 2016, 22: 457-464.
                    ance,  body  composition,  taurine  retention  and  lipid  status  of  [19]   赵小锋, 贾丽, 周剑平. 牛磺酸对鲫鱼蛋白质消化吸收的影响
                    persian sturgeon, Acipenser persicus (Borodin, 1897), fed with  [J]. 水产养殖, 2006(5): 5-6.
                    plant–based diet[J]. Aquaculture Nutrition, 2018, 24: 324-331.  Zhao X F, Jia L, Zhou J P. Effect of taurine on protein digestib-
              [10]   Ji K, Liang H L, Ren M C, et al. The immunoreaction and anti-  ility of crucian carp[J]. Journal of Aquaculture, 2006(5): 5-6 (in
                    oxidant capacity of juvenile blunt snout bream (Megalobrama  Chinese).
                    amblycephala)  involves  the  PI3K/Akt/Nrf2  and  NF-κB  signal  [20]   Hongmanee P, Wongmaneeprateep S, Boonyoung S, et al. The
                    pathways  in  response  to  dietary  methionine  levels[J].  Fish  &  optimal dietary taurine supplementation in zero fish meal diet of
                    Shellfish Immunology, 2020, 105: 126-134.       juvenile snakehead fish (Channa striata)[J]. Aquaculture, 2022,
              [11]   Li X, Li J, Lu K, et al. Effect of dietary supplementation of sel-  553: 738052.
                    enium–L–methionine on growth, antioxidant capacity and res-  [21]   虞为, 杨育凯, 林黑着, 等. 牛磺酸对花鲈生长性能、消化酶
                    istance to nitrite stress of spotted seabass (Lateolabrax macu-  活性、抗氧化能力及免疫指标的影响  [J]. 南方水产科学,
                    latus) under two rearing water temperatures[J]. Animal Nutri-  2021, 17(2): 78-86.
                    tion, 2024, 19: 166-179.                        Yu W, Yang Y K, Lin H Z, et al. Effects of taurine on growth
              [12]   Liang H L, Ji K, Ge X P, et al. Methionine played a positive  performance,  digestive  enzymes,  antioxidant  capacity  and
                    role in improving the intestinal digestion capacity, anti–inflam-  immune  indices  of  Lateolabrax  maculatus[J].  South  China

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