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The effect of triploidy on juvenile Atlantic salmon (Salmo salar) response to varying levels of dietary phosphorus

机译:三倍体对少年大西洋鲑鱼(Salmo salar)对日粮磷水平变化的响应的影响

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Although triploidy induction is a reliable method for producing sterile fish for aquaculture and fisheries management, little is known about how triploidy influences nutrition and bioenergetics of fish. The aim of this study was to determine whether triploidy affects nutrient uptake and body composition in fish, using juvenile Atlantic salmon (Salmo salar) as the test species and varying the levels of dietary phosphorus. Triplicate groups of sibling triploids and diploids (45g initial weight) were fed isocaloric diets with 0.76, 0.99 and 1.39% total phosphorus in a 12-week growth trial, followed by a feed digestibility trial with diets having 0.67, 0.93 and 1.15% total phosphorus. Triploids had a higher growth rate and lower condition factor than diploids during the growth trial, with no difference in feed conversion ratio. Whole-body lipid and energy levels, as well as nitrogen and energy efficiency ratios, were higher in the triploids, but ash and moisture levels were lower. Triploids initially had lower plasma phosphorus levels than diploids, but on the final sampling day there was no difference between ploidies in levels of plasma phosphorus, bone ash and phosphorus within the bone ash. Apparent digestibility coefficients for phosphorus, ash and dry matter were not significantly different between triploids and diploids. The observed effects of triploidy on growth and body composition therefore cannot be attributed to phosphorus utilization and metabolism.
机译:尽管三倍体诱导是生产用于水产养殖和渔业管理的不育鱼类的可靠方法,但是关于三倍体如何影响鱼类营养和生物能的知之甚少。这项研究的目的是确定三倍体是否影响鱼类的养分吸收和身体成分,以大西洋大西洋鲑幼鱼(Salmo salar)为受试物种并改变饮食中磷的含量。在12周的生长试验中,向三组同胞三倍体和二倍体(45 g初始重量)饲喂等热量日粮,其总磷为0.76、0.99和1.39%,随后进行饲料消化率试验,日粮中的总磷为0.67、0.93和1.15% 。在生长试验中,三倍体比二倍体具有更高的生长速率和更低的条件因子,饲料转化率没有差异。三倍体的全身脂质和能量水平以及氮和能量效率比较高,但灰分和水分含量较低。三倍体最初的血浆磷水平低于二倍体,但在最后一个采样日,血浆磷,骨灰和骨灰中磷的倍数之间没有差异。三倍体和二倍体之间对磷,灰分和干物质的表观消化率没有显着差异。因此,观察到的三倍体对生长和身体组成的影响不能归因于磷的利用和代谢。

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