Page 162 - 《水产学报》2025年第10期
P. 162
谭海月,等 水产学报, 2025, 49(10): 109611
[10] 王贵英, 曾可为, 郑翠华, 等. 饲料脂肪水平对鳜鱼生长的影 to lipid ratios on the growth performance and body composi-
响研究 [J]. 淡水渔业, 2003, 33(2): 11-12. tion of Nile tilapia (Oreochromis niloticus) fingerlings[J].
Wang G Y, Zeng K W, Zheng C H, et al. Effects of dietary fat Animal Research, 2001, 50(1): 91-100.
levels on the growth of mandarin fish (Siniperca chuatsi)[J]. [23] Qu H T, Ke W, Wen Z H, et al. Effects of dietary carbohydrate
Freshwater Fisheries, 2003, 33(2): 11-12 (in Chinese). on growth, feed utilization, hepatic glucose and lipid metabol-
[11] 梁旭方, 李姣. 鳜鱼营养需求与饲料研制技术 [J]. 科学养鱼, ism in endangered Yangtze sturgeon (Acipenser dabryanus)[J].
2020(1): 66-67. Aquaculture Reports, 2022, 26: 101334.
Liang X F, Li J. Nutritional requirements and feed develop- [24] Han Z H, Gong Y, Zhang N H, et al. Effects of dietary carbo-
ment technology for mandarin fish (Siniperca chuatsi)[J]. Sci- hydrate and lipid levels on growth performance, hepatic histo-
entific Fish Farming, 2020(1): 66-67 (in Chinese). logy and antioxidant capacity and flesh texture of mandarin fish
[12] 麦康森. 水产动物营养与饲料学 [M]. 2 版. 北京: 中国农业出 (Siniperca chuatsi)[J]. British Journal of Nutrition, 2025,
版社, 2011. 133(3): 299-309.
Mai K S. Aquatic Animal Nutrition and Feed Science [M]. 2nd [25] Wang J, Lan K P, Wu G D, et al. Effect of dietary carbohydrate
ed. Beijing: China Agriculture Press, 2011 (in Chinese). level on growth, feed utilization, energy retention, body com-
[13] Kamalam B J, Medale F, Panserat S. Utilisation of dietary car- position, and digestive and metabolic enzyme activities of
bohydrates in farmed fishes: New insights on influencing juvenile cobia (Rachycentron canadum)[J]. Aquaculture
factors, biological limitations and future strategies[J]. Aquacul- Reports, 2022, 25: 101211.
ture, 2017, 467: 3-27. [26] Adjoumani J J Y, Abasubong K P, Zhang L, et al. A time-
[14] Polakof S, Panserat S, Soengas J L, et al. Glucose metabolism course study of the effects of a high-carbohydrate diet on the
in fish: A review[J]. Journal of Comparative Physiology B, growth performance, glycolipid metabolism and mitochondrial
2012, 182(8): 1015-1045. biogenesis and function of blunt snout bream (Megalobrama
[15] Zhang Y, Feng H, Liang X F, et al. Dietary bile acids reduce amblycephala)[J]. Aquaculture, 2022, 552: 738011.
liver lipid deposition via activating farnesoid X receptor, and [27] Su J Z, Mei L Y, Xi L W, et al. Responses of glycolysis, glyco-
improve gut health by regulating gut microbiota in Chinese gen accumulation and glucose-induced lipogenesis in grass carp
perch (Siniperca chuatsi)[J]. Fish & Shellfish Immunology, and Chinese longsnout catfish fed high-carbohydrate diet[J].
2022, 121: 265-275. Aquaculture, 2021, 533: 736146.
[16] Zhang Y, Liang X F, He S, et al. Metabolic responses of [28] Kong L M, Ma J R, Zhou S S, et al. Effects of puerarin on
Chinese perch (Siniperca chuatsi) to different levels of dietary growth, liver immunity and antioxidant capacity of yellowfin
carbohydrate[J]. Fish Physiology and Biochemistry, 2021, seabream (Acanthopagrus latus) under oxidized fish oil
47(5): 1449-1465. stress[J]. Aquaculture Reports, 2024, 37: 102212.
[17] Liu S Y, Li M H, Han C, et al. Production of neofemale by 17β- [29] Banaee M, Sureda A, Mirvaghefi A R, et al. Effects of diazinon
estradiol and YY super-male breeding in mandarin fish (Sini- on biochemical parameters of blood in rainbow trout (Onco-
perca chuatsi)[J]. Aquaculture, 2024, 581: 740479. rhynchus mykiss)[J]. Pesticide Biochemistry and Physiology,
[18] AOAC. Official Methods of Analysis of AOAC International 2011, 99(1): 1-6.
[M]. 16th ed. Arlington: AOAC International, 1995. [30] Zhong L, Liu H L, Zhang H Q, et al. High starch in diet leads to
[19] Hall M B. Neutral detergent-soluble carbohydrates, in: nutri- disruption of hepatic glycogen metabolism and liver fibrosis in
tional relevance and analysis. A laboratory manual[M]. Gaines- largemouth bass (Micropterus salmoides), which is mediated by
ville: University of Florida, Florida Cooperative Extension Ser- the PI3K/Akt signaling pathway[J]. Frontiers in Physiology,
vice, 2000: 77. 2022, 13: 880513.
[20] Livak K J, Schmittgen T D. Analysis of relative gene expres- [31] 吴凡, 文华, 蒋明, 等. 饲料碳水化合物水平对吉富罗非鱼幼
sion data using real-time quantitative PCR and the 2 −∆∆C T 鱼生长性能和血液主要生化指标的影响 [J]. 西北农林科技
method[J]. Methods, 2001, 25(4): 402-408. 大学学报 (自然科学版), 2012, 40(12): 8-14.
[21] Guo Q Q, Wang Y T, Li N, et al. Effects of dietary carbo- Wu F, Wen H, Jiang M, et al. Effects of dietary carbohydrate
hydrate levels on growth performance, feed utilization, liver levels on growth performance and main blood biochemical
histology and intestinal microflora of juvenile tiger puffer indices of juvenile GIFT tilapia (Oreochromis niloticus)[J].
(Takifugu rubripes)[J]. Aquaculture Reports, 2024, 36: 102035. Journal of Northwest A& F University (Natural Science Edi-
[22] Ali A, Al-Asgah N A. Effect of feeding different carbohydrate tion), 2012, 40(12): 8-14 (in Chinese).
中国水产学会主办 sponsored by China Society of Fisheries https://www.china-fishery.cn
9