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The Protective Roles of Dietary Selenium Yeast and Tea Polyphenols on Growth Performance and Ammonia Tolerance of Juvenile Wuchang Bream (Megalobrama amblycephala)

机译:膳食硒酵母和茶多酚对青少年武昌鲷生长性能和氨耐受性的保护作用(Megalobrama Amblycephala)

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摘要

In order to investigate protective roles of dietary selenium yeast (SY) and tea polyphenols (TPs) on growth of juvenile Wuchang bream (Megalobrama amblycephala) and its resistance under ammonia stress, juvenile Wuchang bream were randomly assigned into four groups: a control group fed basal diets and three treatment groups fed basal diets supplemented with 0.50 mg/kg SY, 50 mg/kg TPs and a combination of 0.50 mg/kg SY and 50 mg/kg TPs, respectively. After 60 days of feeding, growth parameters of Wuchang bream were measured along with serum hormones and the transcription of growth axis-related genes. Then fish were exposed to ammonia stress of 22.5 mg/L total ammonia nitrogen. Hepatic oxidative damage parameters, antioxidant responses and ultrastructure were evaluated before ammonia exposure (0 h) and at 3, 6, 12, 24, and 48 h after ammonia exposure. Results show that before ammonia exposure, the growth parameters, serum GH and IGF-1 levels as well as the growth axis-related gene expression (gh, ghr2 and igf-1) for the SY and combination groups were higher than those determined for the fish on the control diet. In contrast, the administration of TP alone didn’t have significant effects on the growth parameters and growth-related hormones. After ammonia exposure, compared with the control, remarkable increases in the activity and mRNA expression of hepatic antioxidant enzymes (glutathione peroxidase and catalase superoxide dismutase) in three treatment groups were observed along with decreases of hepatic malondialdehyde and protein carbonylation levels, indicating that the single and combined supplementation of SY and TPs could enhance antioxidant capacity to alleviate oxidative stress and damage by ammonia. Consistent with this finding, alterations of the liver ultrastructure in three treatment groups were less severe and faster recovery than in the control group after ammonia exposure. In conclusion, a basal diet supplemented with the combination of 0.50 mg/kg SY and 50 mg/kg TPs could has very beneficial effects on the whole aspects of the growth and ammonia resistance in Wuchang bream juveniles.
机译:为了研究膳食硒酵母(SY)和少年武昌鱼(团头鲂)及其氨应力下电阻的生长茶多酚(TPS)的保护作用,幼年武昌鱼随机分为四组:对照组饲喂基础饮食和补充有0.50毫克/千克SY,50毫克/公斤的TP 3个供给处理组基础日粮和0.50毫克/千克SY和50mg / kg的TPS,分别的组合。后喂养60天后,用血清激素和生长轴相关基因的转录沿着测量武昌鱼的生长参数。然后鱼暴露于22.5毫克/升总氨态氮的氨压力。肝的氧化性损伤的参数,抗氧化响应和超微结构氨暴露(0 H)之前进行了评价,并在3,6,12,24,和48氨暴露后小时。结果表明,氨暴露,生长参数,血清GH和IGF-1水平之前以及生长轴相关基因表达(GH,GHR2和IGF-1)为SY和组合组均高于针对所确定的更高鱼放在控制饮食。相比之下,TP的单独给药没有对生长参数和生长相关激素显著的影响。氨曝光后,与对照组相比,在活性和肝抗氧化酶的mRNA表达显着增加(谷胱甘肽过氧化物酶和过氧化氢酶过氧化物歧化酶)在三个治疗组中观察到了随着肝丙二醛和蛋白质的羰基化水平的降低,指示单和SY和TP的联合添加可提高抗氧化能力通过氨来减轻氧化应激和损伤。与此发现一致,在三个治疗组肝脏超微结构的改变病情较轻,恢复快比氨暴露后,对照组。总之,基础饲料补充的组合0.50毫克/公斤SY和50毫克/公斤的TP能对在武昌鱼幼体生长和氨电阻的整个方面非常有益的效果。

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