以发酵豆粕和有机硒为饲料的金目鲈幼鱼的生长、酶谷胱甘肽过氧化物酶活性和生化状况。

Bone Pub Date : 2017-06-01 Epub Date: 2016-12-27 DOI:10.1007/s10695-016-0331-2
I Ilham, Ravi Fotedar
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引用次数: 1

摘要

使用面包酵母在 30 °C 下发酵溶剂提取的豆粕(SBM)5 天。将含有 75% SBM 蛋白质的发酵或未发酵(SBM 和 FSBM)、添加或不添加有机硒(OS)(SBMOS 和 FSBMOS)的四种等氮等热量日粮喂给一式三组的金目鲈幼鱼(初始体重为 5 克),喂养 75 天。以鱼粉(FM)为基础配制的幼鱼日粮作为参考日粮。鱼类的生长受到 SBM 类型或 OS 水平的交互影响。在饲喂添加 OS 的日粮(SBMOS 和 FSBMOS)的鱼类中,饲喂发酵 SBM(FSBMOS)的鱼类的最终体重(FW)、特定生长率(SGR)和增重(WG)均高于饲喂非发酵 SBM(SBMOS)的鱼类。饲喂发酵 SBM(添加或不添加 OS)的鱼的蛋白质表观消化系数(ADC)更高。然而,不同试验日粮的干物质(DM)和脂类的表观消化系数与参考日粮相比没有明显差异。饲喂 FSBMOS 日粮的鱼的血细胞比容和白细胞比容低于饲喂 FM 日粮的鱼。此外,谷胱甘肽过氧化物酶(GPx)的活性受试验日粮中补充 OS 的显著影响;喂食补充 OS 的日粮的鱼的 GPx 活性更高。各组鱼的肌酸激酶(CK)均高于饲喂参考日粮的鱼。这些结果表明,在营养水平适当的情况下,补充 OS 可作为一个重要因素,促进以发酵 SBM 为基础的日粮饲喂的幼年金目鲈的 GPx 酶活性以及血液学和血液生化状况,从而提高其整体生长性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Growth, enzymatic glutathione peroxidase activity and biochemical status of juvenile barramundi (Lates calcarifer) fed dietary fermented soybean meal and organic selenium.

Solvent-extracted soybean meal (SBM) was fermented using baker's yeast Saccharomyces cerevisae at 30 °C for 5 days. Four isonitrogenous and isocaloric diets containing 75% SBM protein, either fermented or non-fermented (SBM and FSBM), and supplemented or not with organic Se (OS) (SBMOS and FSBMOS), were fed to triplicate groups of juvenile barramundi (Lates calcarifer) (initial weight of 5 g) for 75 days. A fishmeal (FM)-based diet formulated for juvenile barramundi was used as a reference diet. The growth of fish was significantly affected by either the interaction of SBM type or by the OS level. In fish fed diets supplemented with OS (SBMOS and FSBMOS), final weight (FW), specific growth rate (SGR) and weight gain (WG) were higher in fish fed the fermented SBM (FSBMOS) than in those fed the non-fermented SBM (SBMOS). The apparent digestibility coefficient (ADC) of protein was higher in the fish fed the fermented SBM, either supplemented or unsupplemented with OS. However, there were no significant differences in the ADC of dry matter (DM) and lipids among the tested diets and in comparison to the reference diet. The haematocrit and leucocrit of fish fed the FSBMOS diet were lower than those of fish fed the FM diet. Furthermore, glutathione peroxidase (GPx) activity was significantly influenced by OS supplementation in the experimental diets; GPx activity was greater in the fish fed diets supplemented with OS. Creatinine kinase (CK) of all groups of fish was higher than the CK of those fed the reference diet. These results suggest that with a proper nutritional level, OS supplementation may act as an important factor in enzymatic GPx activity and in the haematology and blood biochemistry status of juvenile barramundi fed fermented SBM-based diets, encouraging improvement of the overall growth performance.

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