Nutritional Analysis and Evaluation of Eggs of River Sturgeon Acipenser dabryanus
LIU Ya, NI Luyun, WU Xiaoyun, LAI Jiansheng, DU Jun, CHEN Yeyu, SONG Mingjiang, LI Feiyang, GONG Quan
1. Fisheries Research Institute, Sichuan Academy of Agricultural Sciences (Sichuan Fisheries Research Institute), Chengdu 611730, China; 2. Fish Resources and Environment in the Upper Reaches of the Yangtze River Observation and Research Station of Sichuan Province, Chengdu 611730, China
Abstract:To investigate the nutritional composition of river sturgeon Acipenser dabryanus eggs, the proximate nutrients, amino acids, fatty acids, minerals, and vitamin contents were analyzed in eggs of 13-year-old cultured river sturgeon using national standard methods. The nutritional quality was evaluated according to the amino acid scoring standards recommended by the Food and Agriculture Organization and World Health Organization(FAO/WHO). Results showed that there was crude protein content of 28.96%, crude fat 10.88%, moisture 56.84%, and crude ash 1.51% in the eggs. A total of 16 amino acids were detected, with total amino acid content of 59.37%, including 7 essential amino acids accounting for 24.35%, valine being the first limiting amino acid. The essential amino acid composition met FAO/WHO quality protein source standards, with an essential amino acid index of 60.97%, indicating that the egg was high protein quality. Fatty acid analysis revealed that there were 18 types, including 6 saturated fatty acids (27.86%), 4 monounsaturated fatty acids (31.60%), and 8 polyunsaturated fatty acids (40.54%). The eggs contained trace element: copper of 6.25 mg/kg, zinc 75.42 mg/kg, iron 80.68 mg/kg, and manganese 5.45 mg/kg, with the maximal vitamin E content of 35.07 mg/100 g in five vitamins. The dietary theoretical requirements for protein, lipids, eicosapentaenoic acid, and docosahexaenoic acid were estimated for river sturgeon larvae and juveniles based on the nutritional composition of theeggs to provide theoretical basis for feed development.
刘亚, 倪露芸, 吴晓雲, 赖见生, 杜军, 陈叶雨, 宋明江, 李飞扬, 龚全. 长江鲟鱼卵营养成分分析及评价[J]. 水产科学, 2026, 45(4): 539-548.
LIU Ya, NI Luyun, WU Xiaoyun, LAI Jiansheng, DU Jun, CHEN Yeyu, SONG Mingjiang, LI Feiyang, GONG Quan. Nutritional Analysis and Evaluation of Eggs of River Sturgeon Acipenser dabryanus. Fisheries Science, 2026, 45(4): 539-548.
[1] 陈细华.鲟形目鱼类生物学与资源现状[M].北京:海洋出版社,2007:53-57. [2] 龚全,刘亚,杜军,等.达氏鲟全人工繁殖技术研究[J].西南农业学报,2013,26(4):1710-1714. [3] 陈俊,徐承旭.极危物种长江鲟全人工繁殖成功[J].水产科技情报,2019,46(4):235. [4] 杜浩,罗江,周亮,等.长江鲟子三代繁育技术研究[J].四川动物,2020,39(2):197-203. [5] ZHANG L, WANG H, GESSNER J, et al. To save sturgeons, we need river channels around hydropower dams[J]. Proceedings of the National Academy of Sciences of the United States of America,2023,120(13):e2217386120. [6] CHEN Y Y, WU X Y, LAI J S, et al. Comprehensive transcriptome analysis reveals the effect of feeding rhythm on the immunity and metabolism of Acipenser dabryanus[J]. Fish & Shellfish Immunology,2022,122:276-287. [7] 田甜,张建明,朱欣,等.长江鲟幼鱼黏液、肠道内容物及其养殖水体的微生物菌群结构和潜在病原菌分析[J].南方水产科学,2023,19(6):71-83. [8] 许兰馨,周亮,危起伟.长江鲟类资源现状及保护[J].水产学报,2023,47(2):60-70. [9] 杨晶晶,姜志强,左然涛,等.绒杜父鱼卵营养成分分析及评价[J].动物营养学报,2014,26(4):1103-1110. [10] 李成,程小飞,洪波,等.刺鲃鱼卵营养成分分析及评价[J].动物营养学报,2016,28(7):2204-2212. [11] 黎原谷,李慷,刘利平.人工繁殖条件下日本鳗鲡鱼卵营养成分分析及评价[J].上海海洋大学学报,2019,28(2):190-199. [12] Food and Agriculture Organization of the United Nations/World Health Organization. Energy and Protein Requirement[R]. Geneva: WHO, 1973:14-99. [13] 桥本芳郎.养鱼饲料学[M]. 蔡完其,译.北京:中国农业出版社,1980,114-115. [14] 施永海,徐嘉波,谢永德,等.美洲鲥鱼卵营养成分分析及评价[J].水产科学,2020,39(3):407-413. [15] 宋青春.水产动物营养与配合饲料学[M].2版.北京:中国农业大学出版社,2019:25-261. [16] 饶秋华,罗土炎,苏德森,等.史氏鲟鱼鱼籽营养成分分析及评价[J].农学学报,2011,1(5):28-31. [17] TIBBETTS S M, MANN J, DUMAS A. Apparent digestibility of nutrients, energy, essential amino acids and fatty acids of juvenile Atlantic salmon (Salmo salar L. ) diets containing whole-cell or cell-ruptured Chlorella vulgaris meals at five dietary inclusion levels[J]. Aquaculture,2017,481:25-39. [18] 高露姣,夏永涛,黄艳青,等.俄罗斯鲟鱼卵与西伯利亚鲟鱼卵的营养成分比较[J].海洋渔业,2012,34(1):57-63. [19] 郑婷婷,周静,翁欣,等.四种海产鱼卵的营养成分差异性分析及评价[J].食品与发酵工业,2020,46(13):244-249. [20] 郑婷婷,梁鹏,张卿,等.鲤鱼卵和青鱼卵的营养成分分析及评价[J].食品工业,2020,41(6):345-348. [21] ZHAO Y G, ZHANG M, DEVAHASTIN S, et al. Progresses on processing methods of umami substances: a review[J]. Trends in Food Science & Technology,2019,93:125-135. [22] 庄海旗,刘江琴,崔燎,等.4种狗母鱼科鱼类肌肉脂肪酸分析[J].水产科学,2020,39(4):602-608. [23] OLEJNIK A, GORNOWICZ-POROWSKA J, JENEROWICZ D, et al. Fatty acids profile and the relevance of membranes as the target of nutrition-based strategies in atopic dermatitis:a narrative review[J]. Nutrients,2023,15(17):3857. [24] 刘晓勇,索力,张颖,等.三种养殖鲟鱼卵营养成分的比较分析[J].淡水渔业,2014,44(5):82-86. [25] LIU J H, WANG Q, YOU Q L, et al.Acute EPA-induced learning and memory impairment in mice is prevented by DHA[J]. Nature Communications,2020,11:5465. [26] ZHUANG P, LI H Y, JIA W, et al. Eicosapentaenoic and docosahexaenoic acids attenuate hyperglycemia through the microbiome-gut-organs axis in db/db mice[J]. Microbiome,2021,9(1):185. [27] QIAO X M, ZHOU H, LENG X Q, et al. Nutrient distribution in different tissues of subadult Dabry′s sturgeon, Acipenser dabryanus (Duméril, 1869)[J]. Iranian Journal of Fisheries Sciences, 2020,19(6):2970-2984. [28] ZHOU H, LENG X Q, TAN Q S, et al. Identification of key nutrients for gonadal development by comparative analysis of proximate composition and fatty/amino acid profile in tissues and eggs of Chinese sturgeon (Acipenser sinensis Gray,1835)[J]. Journal of Applied Ichthyology,2017,33(5):885-891. [29] 施永海,徐嘉波,刘永士,等.菊黄东方鲀发育早期的脂肪酸组成变化[J].水产学报,2017,41(8):1203-1212. [30] 马双,郝淑贤,李来好,等.几种鱼卵营养成分对比分析[J].南方水产科学,2019,15(4):113-121. [31] WANG F J, ZHENG J H, CHENG J R, et al. Personalized nutrition:a review of genotype-based nutritional supplementation[J]. Frontiers in Nutrition,2022,9:992986. [32] WEN H, YAN A S, GAO Q, et al. Dietary vitamin A requirement of juvenile Amur sturgeon (Acipenser schrenckii)[J]. Journal of Applied Ichthyology,2008,24(5):534-538. [33] 刘亚,龚全,李强,等.全人工繁殖达氏鲟胚胎发育的形态学和组织学观察[J].西南农业学报,2017,30(7):1686-1692. [34] TIAN M K, BAI Y C, TIAN H Y, et al. The chemical composition and health-promoting benefits of vegetable oils—a review[J]. Molecules,2023,28(17):6393. [35] SUWANNASOM N, KAO I, PRUβ A, et al. Riboflavin:the health benefits of a forgotten natural vitamin[J]. International Journal of Molecular Sciences,2020,21(3):950. [36] HALVER J E, HARDY RW. Fish Nutrition[M]. 3 ed. New York: Academic Press, 2002: 797-803. [37] WAN Z J, ZHENG J H, ZHU Z G, et al. Intermediate role of gut microbiota in vitamin B nutrition and its influences on human health[J]. Frontiers in Nutrition,2022,9:1031502. [38] ZHOU Q C, WANG L G, WANG H L, et al. Dietary vitamin E could improve growth performance, lipid peroxidation and non-specific immune responses for juvenile cobia (Rachycentron canadum)[J]. Aquaculture Nutrition,2013,19(3):421-429. [39] ABEDIAN KENARI A, NADERI M. Effects of enriched Artemia by fish and soybean oils supplemented with vitamin E on growth performance, lipid peroxidation, lipase activity and fatty acid composition of Persian sturgeon (Acipenserpersicus) larvae[J]. Aquaculture Nutrition,2016,22(2):382-391. [40] PENG S, CHEN L, QIN J G, et al. Effects of dietary vitamin E supplementation on growth performance, lipid peroxidation and tissue fatty acid composition of black sea bream (Acanthopagrus schlegelii) fed oxidized fish oil[J]. Aquaculture Nutrition,2009,15(3):329-337. [41] HUANG C H, HUANG S L. Effect of dietary vitamin E on growth, tissue lipid peroxidation, and liver glutathione level of juvenile hybrid tilapia, Oreochromis niloticus × O. aureus, fed oxidized oil[J]. Aquaculture,2004,237(1/2/3/4):381-389. [42] HAMRE K. Metabolism, interactions, requirements and functions of vitamin E in fish[J]. Aquaculture Nutrition,2011,17(1):98-115. [43] THIRUVASAGAM T, CHIDAMBARAM P, RANJAN A, et al. Significance of fatty acids in fish broodstock nutrition[J]. Animal Reproduction Science,2024,268:107573. [44] FERNÁNDEZ-PALACIOS H, IZQUIERDO M S, ROBAINA L, et al. Effect of n-3 HUFA level in broodstock diets on egg quality of gilthead sea bream (Sparus aurata L. )[J]. Aquaculture,1995,132(3/4):325-337. [45] NAVAS J M, BRUCE M, THRUSH M, et al. The impact of seasonal alteration in the lipid composition of broodstock diets on egg quality in the European sea bass[J]. Journal of Fish Biology,1997,51(4):760-773. [46] NUTRITION S O F. Nutrient Requirements of Fish[M]. Washington DC:National Academies Press,1993:6-7. [47] 张磊,危起伟,张书环,等.饲料蛋白水平对达氏鲟幼鱼生长性能、体组成、消化酶活性以及血液生化指标的影响[J].淡水渔业,2016,46(6):79-85.