首页> 外文期刊>Aquaculture >Influence of dietary sodium alginate and Pediococcus acidilactici on liver antioxidant status, intestinal lysozyme gene expression, histomorphology, microbiota, and digestive enzymes activity, in Asian sea bass (Lates calcarifer) juveniles
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Influence of dietary sodium alginate and Pediococcus acidilactici on liver antioxidant status, intestinal lysozyme gene expression, histomorphology, microbiota, and digestive enzymes activity, in Asian sea bass (Lates calcarifer) juveniles

机译:亚洲鲈鱼(Lates Calcarifer)青少年肝脏抗氧化物及抗氧化物酸酐对肝脏抗氧化状态,肠溶菌酶基因表达,组织症(Lates Calcarifer)青少年的影响

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A 42-day study was conducted to determine the effect of incorporating dietary low molecular weight sodium alginate (LMWSA), extracted from the brown algae, Undaria pinnatifida and Macrocystis pyritera, and Pediococcus acidilactici MA 18/5 M (PA), Lallemand Animal Nutrition S.A., Blagnac, France, on growth performance, antioxidant defense activity, intestinal lysozyme gene (LYZ) expression, histo-morphology, microbiota, and digestive enzymes activity of Asian sea bass (Lates calcarifer) juveniles. Six experimental diets were formulated including: Diet (1) a basal diet (Control), Diet (2) 5g LMWSA kg(-1) diet, Diet (3) 10 g LMWSA kg(-1) diet, Diet (4) 0.9 x 10(7) CFU PA g(-1) diet, Diet (5) 5 g LMWSA kg(-1) diet + 0.9 x 10(7) CFU PA g(-1) diet, and Diet (6) 10 g LMWSA kg(-1) diet + 0.9 x 10(7) CFU PA g(-1) diet were fed to Asian sea bass, L. calcarifer (12.0 +/- 0.2 g). The results showed that fish fed PA alone (Diet 4) and the combination of both supplements (Diet 5) had the greatest weight gain. Fish fed Diet 6 and those fed Diet 1 (Control) had the highest and lowest villus height, apparent villus surface and crypt depth, respectively. Fish fed diets administered with PA (Diet 4) or synbiotics (Diets 5 and 6) showed higher total viable and lactic acid bacteria counts than all the other groups. The evaluated digestive enzymes activities including total protease, trypsin, lipase, and a-amylase remarkably increased by administration of LMWSA or its combination with PA. Moreover, liver antioxidant enzymes activities including superoxide dismutase, catalase, and Glutathione S-transferase pronouncedly enhanced following the administration of LMWSA or its combination with PA. Supplementing diet with blends of 10 g kg(-1) of LMWSA and PA (Diet 6) more pronouncedly enhanced c-type and g-types LYZ expression in comparison with those fed 5 g kg(-1) of LMWSA and PA (Diet 5). Based on the results obtained, it can be claimed incorporating diet with LMWSA and PA separately or in symbiotic form had promising results as functional feed additives in juvenile Asian sea bass L. calcarifer.
机译:进行了42天的研究以确定纳入膳食低分子量藻酸钠(LMWSA)的效果,从棕色藻类中提取,羊膜内,未经释尼替息酰胺和宏观酰毒素,以及Pediococcus acidilactici ma 18/5M(Pa),Lallemand Angans Nutrition SA,BLAGNAC,法国,对生长性能,抗氧化防御活动,肠溶菌酶基因(LYZ)表达,亚洲鲈鱼(LATE SACKIFER)青少年的患者形态学,微生物酵母和消化酶活性。配制六种实验饮食包括:饮食(1)基础饮食(对照),饮食(2)5g lmwsa kg(-1)饮食,饮食(3)10g lmwsa kg(-1)饮食,饮食(4)0.9 X 10(7)CFU PA G(-1)饮食,饮食(5)5g lmwsa kg(-1)饮食+ 0.9 x 10(7)Cfu pa g(-1)饮食,饮食(6)10 g LMWSA KG(-1)饮食+ 0.9 x 10(7)CFU PA G(-1)饮食被送往亚洲海贝斯,L. Calcarifer(12.0 +/- 0.2g)。结果表明,喂养PA单独的(饮食4)和补充剂(饮食5)的组合具有最大的体重增加。喂养饮食6和喂食饮食1(控制)的饮食1(控制)分别具有最高和最低的绒毛,表观绒毛表面和隐窝深度。用PA(饮食4)或Synbiotics(饮食5和6)给予喂养的饲料饮食表现出比所有其他组的总活性和乳酸菌计数更高。通过施用LMWSA或其与PA的组合,评估的消化酶活性包括总蛋白酶,胰蛋白酶,脂肪酶和A-淀粉酶显着增加。此外,在给予LMWSA或其与PA的组合后,肝脏抗氧化酶活性包括超氧化物歧化酶,过氧化氢酶和谷胱甘肽S-转移酶的发音增强。补充饮食,具有10g kg(-1)的LMWSA和PA(饮食6)更明显增强的C型和G型Lyz表达,相对于LMWSA和PA(饮食5)。基于所得的结果,可以单独或以共生形式掺入LMWSA和PA的饮食,并以少年亚洲鲈鱼L. Calcarifer中的功能性饲料添加剂具有有前途的结果。

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