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首页> 外文期刊>The Journal of Experimental Biology >Dogmas and controversies in the handling of nitrogenous wastes: is exogenous ammonia a growth stimulant in fish?
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Dogmas and controversies in the handling of nitrogenous wastes: is exogenous ammonia a growth stimulant in fish?

机译:在处理含氮废物方面的教条和争议:外源氨是否是鱼类的生长刺激物?

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Traditionally, waterborne ammonia is considered a toxicant that decreases productivity in aquaculture. However, several recent studies have suggested, but not proven, that growth of salmonids might actually be stimulated by chronic exposure to very low levels of ammonia. In the present study, two 70-71 day growth experiments were conducted under rigorously controlled experimental conditions with juvenile rainbow trout at total ammonia concentrations ([T(Amm)])=0, 70 and 225 micro mol l(-1), pH 7.6. In the first series, a small-scale laboratory proof-of-principle study at 15 degrees C, there was a significant stimulation of mass gain, gross food conversion efficiency, condition factor and protein production per fish at [T(Amm)]=70 micro mol l(-1), without an increase in voluntary food consumption or change in 'in-tank' O(2) consumption or ammonia excretion rates. These growth stimulatory effects were not seen at [T(Amm)]=225 micro mol l(-1), where the fish consumed more food, and excreted more ammonia, yet achieved the same mass and protein content as the controls. In the second series, a larger study conducted in an aquaculture facility at 6.5 degrees C, growth rate, conversion efficiency and protein production per fish over 71 days were all significantly stimulated at [T(Amm)]=225 micro mol l(-1), but not at 70 micro mol l(-1), without any change in voluntary food consumption. These effects occurred despite an early inhibition of growth at both [T(Amm)] levels. When ration was restricted, growth was reduced and there were no longer any differential effects attributable to [T(Amm)]. While the effective levels of [T(Amm)] differed between the two series, in both, the P(NH(3)) level stimulating growth was approximately 23 micro torr. The results are interpreted as reflecting either a stimulation of ammonia incorporation into amino acids and protein synthesis and/or a reduction in metabolic costs. The finding that low levels of exogenous ammonia can serve as a growth stimulant without altering food consumption may be important for aquacultural practice, and challenges traditional dogma that the effects of ammonia are detrimental to growth.
机译:传统上,水性氨被认为是降低水产养殖生产率的有毒物质。但是,最近的一些研究表明但尚未证明,长期暴露于非常低水平的氨会刺激鲑鱼的生长。在本研究中,在严格控制的实验条件下进行了两个70-71天的生长实验,少年虹鳟鱼的总氨浓度([T(Amm)])= 0、70和225 micro mol l(-1),pH 7.6。在第一个系列中,在15摄氏度的小型实验室原理验证研究中,在[T(Amm)] =下,每条鱼的质量增加,总食物转化效率,条件因子和蛋白质生产受到显着刺激。 70 micro mol l(-1),但不增加自愿食物的摄入量或“罐内” O(2)消耗量或氨的排泄率的变化。在[T(Amm)] = 225 micro mol l(-1)处未观察到这些生长刺激作用,其中鱼消耗更多的食物,并排泄了更多的氨,但其质量和蛋白质含量却与对照相同。在第二个系列中,在[T(Amm)] = 225 micro mol l(-1)下,在6.5摄氏度的水产养殖设施中进行的一项更大的研究显示,在71天内,每条鱼的生长速度,转化效率和蛋白质产量均得到了显着刺激。 ),但不要以70 mol l(-1)的量添加,而自愿性食品的摄入量则没有任何变化。尽管在两个[T(Amm)]水平上都有早期的生长抑制作用,但仍发生了这些效应。当限制配给量时,生长减少并且不再有可归因于[T(Amm)]的差异作用。虽然[T(Amm)]的有效水平在两个系列之间有所不同,但在两个系列中,刺激生长的P(NH(3))水平约为23微托。结果被解释为反映了氨结合到氨基酸和蛋白质合成中的刺激和/或代谢成本的降低。低水平的外源氨可以用作生长刺激物而不改变食物消耗的发现对于水产养殖实践可能是重要的,并向传统教条提出挑战,即氨的作用对生长不利。

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