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首页> 外文期刊>Archives of Animal Nutrition >Growth, body composition, mineralisation and Na+/K+-ATPase activity of fingerling Heteropneustes fossilis (Bloch) fed diets with different levels of potassium
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Growth, body composition, mineralisation and Na+/K+-ATPase activity of fingerling Heteropneustes fossilis (Bloch) fed diets with different levels of potassium

机译:用不同水平的钾喂养喂食的鱼类杂散化石(Bloch)的生长,身体成分,矿化和Na + / K + -Atpase活性

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A growth trial was performed to optimise the inclusion of potassium (K) in feeds of Heteropneustes fossilis (body weight [BW] 6.92 +/- 0.1 g). Eight isonitrogenous and isoenergetic diets with varying dietary K levels were prepared by supplementing 0, 1.91, 3.82, 5.73, 7.64, 9.55, 11.46 and 13.37 g KCl/kg basal diet. Analysed dietary K levels were 0.16, 1.12, 2.08, 3.19, 4.18, 5.16, 6.11, 7.14 and 8.16 g/kg dry matter. BW gain, feed conversion ratio (FCR), protein gain (PG) and gill Na+/K+-ATPase activity were best in fish fed 4.18 g K/kg diet. The K concentrations in the whole body and vertebrae increased linearly with the increase up to 5.16 g K/kg diet and reached then a plateau. The K-retention [%] was highest in fish fed the basal diet and decreased with the further inclusion of dietary K up to 2.08 g/kg followed by no change up to diet containing 4.18 g K/kg and then declined further in fish fed higher levels of dietary K. Serum alkaline phosphatase activity was found to increase up to 4.18 g K/kg diet. Regression of BW gain, PG, gill Na+/K+-ATPase and vertebrae K concentration against varying levels of dietary K using broken-line model indicated that an inclusion of 5.44 g K/kg diet is the optimum for maximising growth and mineralisation of H. fossilis.
机译:进行生长试验以优化包含钾(K)在杂发骨质化石(体重[BW] 6.92 +/- 0.1g)的饲料中的含量。通过补充0,1.91,3.82,5.73,7.64,9.55,11.46和13.37g Kcl / kg基础饮食,制备具有不同膳食K水平的八个异鼻型和异液饮食。分析的膳食K水平为0.16,1.12,2.08,3.19,4.18,5.16,6.11,7.14和8.16g / kg干物质。 BW增益,饲料转化率(FCR),蛋白质增益(PG)和鳃Na + / K + -ATPase活性在Fred 4.18g K / kg饮食中最好。全身和椎骨中的K浓度随着5.16g k / kg饮食而增加,达到高原。 k-retent [%]在喂养基础饮食的鱼中是最高的,并随着膳食K的进一步含量降低,高达2.08g / kg,然后没有含有4.18g k / kg的饮食,然后在喂食中进一步下降发现膳食K.血清碱性磷酸酶活性较高。增加高达4.18g k / kg饮食。 BW增益,PG,鳃Na + / K + -ATP酶和椎骨K浓度的消退利用破碎线模型的不同水平的膳食K的浓度表明,包含5.44g k / kg饮食是最大化H的最佳增长和矿化的最佳选择。化石。

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