The effect of dietary fucoidan on growth, immune functions, blood characteristics and oxidative stress resistance of juvenile red sea bream, Pagrus major

被引:0
作者
Nadia Mahjabin Sony
Manabu Ishikawa
Md. Sakhawat Hossain
Shunsuke Koshio
Saichiro Yokoyama
机构
[1] Kagoshima University,The Graduate School of Fisheries
[2] Kagoshima University,Laboratory of Aquatic Animal Nutrition, Faculty of Fisheries
[3] Sylhet Agricultural University,Department of Aquaculture, Faculty of Fisheries
来源
Fish Physiology and Biochemistry | 2019年 / 45卷
关键词
Fucoidan; Growth; Immune responses; Blood characteristics; Oxidative stress;
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学科分类号
摘要
We determined the supplementation effects of dietary fucoidan on growth, immune responses, blood characteristics, and oxidative stress resistance of juvenile red sea bream. A fishmeal (FM)-based basal diet supplemented with 0% (D1, control), 0.05% (D2), 0.1% (D3), 0.2% (D4), 0.4% (D5), and 0.8% (D6) mozuku fucoidan to formulate six experimental diets. Each diet was randomly allocated to triplicate groups of fish (3.8 g) for 60 days. Results showed that fish-fed diet D5 showed significantly higher (P < 0.05) growth performance compared to the control (D1). Diet groups D2 to D4 also showed intermediate values compared to D1. Feed conversion efficiency and protein efficiency ratio were significantly higher in diet group D5, which was not significantly different with D3. Fucoidan supplementation increased whole-body lipid, which was significantly higher in the D5 group. Condition factor (CF) was significantly higher in fish fed ≥ 0.2% fucoidan-supplemented diet groups. Diet group D5 and D4 showed significantly lower blood urea nitrogen (BUN) and aspartate aminotransferase (AST) level, respectively. Dietary fucoidan reduced the oxidative stress of fish. Among the measured nonspecific immune parameters, only peroxidase activity (PA) and total serum protein (TSP) were significantly influenced by dietary supplementation and it was higher in D4 group. Fucoidan supplementation reduces thiobarbituric acid reactive substance (TBARS) values numerically and it was lowest in fish-fed diet group D5. Under the present experimental condition, finally, we concluded that 0.3–0.4% dietary fucoidan supplementation enhanced the growth and health performance of red sea bream by increasing growth, immune response, blood characteristics, and oxidative stress resistance.
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页码:439 / 454
页数:15
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共 267 条
[1]  
Armstrong D(1994)The analysis of free radicals, lipid peroxides, antioxidant enzymes and compounds to oxidative stress as applied to the clinical chemistry laboratory Adv Exp Med Biol 366 43-58
[2]  
Browne R(2008)Biological effects of a sulfated-polysaccharide isolated from the marine red algae Biol Pharm Bull 31 691-695
[3]  
Assreuy AMS(2015)Fucoidan and cancer: a multifunctional molecule with anti-tumor potential Mar Drugs 13 2327-2346
[4]  
Gomes DM(2000)Dealing with antimicrobial resistance—the Danish experience Can J Anim Sci 80 223-228
[5]  
Silva MSJ(2003)Traceability of inbred and crossbred Cinta Senese pigs by evaluating the oxidative stress J Veterinary Med Ser A 50 113-116
[6]  
Torres VM(2012)Effects of dietary Fish Shellfish Immunol 33 342-349
[7]  
Siqueira RCL(2005), Med Food 8 446-453
[8]  
Pires AF(2004), and Aquaculture 233 23-30
[9]  
Criddle DN(2014), singularly or in combination, on the immune response and disease resistance of sea bream ( Vet Immunol Immunopathol 162 168-173
[10]  
Alencar NMN(2012) L.) Fish Shellfish Immunol 32 976-985