首页> 外文期刊>Journal of Fish Biology >Growth and energy budget of F2 'all-fish' growth hormone gene transgenic common carp.
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Growth and energy budget of F2 'all-fish' growth hormone gene transgenic common carp.

机译:F2“全鱼”生长激素基因转基因鲤鱼的生长和能量收支。

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摘要

The growth and energy budget for F2 'all-fish' growth hormone gene transgenic common carp Cyprinus carpio of two body sizes were investigated at 29.2 degrees C for 21 days. Specific growth rate, feed intake, feed efficiency, digestibility coefficients of dry matter and protein, gross energy intake (IE), and the proportion of IE utilized for heat production (HE) were significantly higher in the transgenics than in the controls. The proportion of IE directed to waste products [faecal energy (FE) and excretory energy loss (ZE+UE) where ZE is through the gills and UE through the kidney], and the proportion of metabolizable energy (ME) for recovered energy (RE) were significantly lower in the transgenics than in the controls. The average energy budget equation of transgenic fish was as follows: 100 IE=19.3 FE+6.0 (ZE+UE)+45.2 HE+29.5 RE or 100 ME=60.5 HE+39.5 RE. The average energy budget equation of the controls was: 100 IE=25.2 FE+7.4 (ZE+UE)+35.5 HE+31.9 RE or 100 ME=52.7 HE+47.3 RE. These findings indicate that the high growth rate of 'all-fish' transgenic common carp relative to their non-transgenic counterparts was due to their increased feed intake, reduced lose of waste productions and improved feed efficiency. The benefit of the increased energy intake by transgenic fish, however, was diminished by their increased metabolism..
机译:在29.2摄氏度下研究了F2“全鱼”生长激素基因转基因鲤鱼Cyprinus carpio的生长和能量收支,持续21天。转基因动物的比生长率,饲料采食量,饲料效率,干物质和蛋白质的消化系数,总能量采食量(IE)以及用于发热量(HE)的IE比例明显高于对照。 IE用于废物的比例[粪便能量(FE)和排泄能量损失(ZE + UE),其中ZE是通过g刺,UE是通过肾脏],而代谢能(ME)则是回收能量(RE) )在转基因中显着低于对照。转基因鱼的平均能量收支方程如下:100 IE = 19.3 FE + 6.0(ZE + UE)+45.2 HE + 29.5 RE或100 ME = 60.5 HE + 39.5 RE。对照的平均能量预算方程为:100 IE = 25.2 FE + 7.4(ZE + UE)+35.5 HE + 31.9 RE或100 ME = 52.7 HE + 47.3 RE。这些发现表明,“全鱼”转基因鲤鱼相对于非转基因鲤鱼的高生长率是由于它们增加了采食量,减少了废物产生的损失并提高了饲料效率。但是,转基因鱼的新陈代谢增加了能量摄入增加的益处。

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