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首页> 外文期刊>Aquaculture >Effect of levels and sources of dietary manganese on growth and mineral composition of post-smolt Atlantic salmon fed low fish meal, plant-based ingredient diets
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Effect of levels and sources of dietary manganese on growth and mineral composition of post-smolt Atlantic salmon fed low fish meal, plant-based ingredient diets

机译:膳食锰水平和来源对粮食后鲑鱼饲喂低鱼粉,植物型成分饮食的生长和矿物成分

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The impact of dietary manganese (Mn) levels and sources on the growth and mineral composition of post-smolt Atlantic salmon (Salmo salar) fed practical diets was studied. Seven experimental diets were prepared with graded supplementation level of Mn; basal diet had a Mn concentration of 15 mg kg(-1), four diets with 5, 15, 35 and 65 mg kg(-1) supplementation of Mn as MnSO4 and two diets with at 5 and 15 mg kg(-1) supplementation of Mn as Mn-glycine (Mn-gly). Atlantic salmon (initial weight, 307 +/- 25 g) were distributed to 21 tanks (35 fish/tank). These fish were randomly fed with one of the experimental diets, in triplicate groups to apparent satiation for 8 weeks. At week 4 and 8, samples of whole body, plasma, bile, liver and vertebrae were collected, and their mineral concentration determined. At week 8, feaces were collected by stripping for measuring apparent availability coefficient (AAC). Neither the Mn inclusion level, nor the source had a significant impact on growth and other performance indicators. Plasma and bile Mn concentrations were significantly affected by dietary treatments at both sampling points, at week 4 and 8; whereas, whole body, liver and vertebrae responded significantly only at the end of 8 weeks. Dietary Mn level needed to meet the requirement of post-smolt Atlantic salmon was estimated by non-linear regression models using saturation of whole body or tissue Mn status as response criteria. The estimates based on Mn concentration in whole body, vertebrae, plasma and apparent availability were 29.5 +/- 5.3, 26.2 +/- 2.7, 26.3 +/- 4.9 and 34 +/- 3.4 mg Mn kg(-1) diet, respectively. Analysis of relative bioavailability index showed that low inclusion of Mn-gly (5 mg kg(-1 )supplementation) was 2.6 to 4.5-fold more efficient than MnSO4 to attain whole body or tissue Mn saturation levels. On the contrary, high inclusion of Mn-gly (15 mgkg(-1) supplementation) reduced the AAC of Mn, zinc (Zn) and copper (Cu), along with lower Mn and Zn status in tissues. The mean estimate of dietary Mn required to maintain tissue Mn saturation ranged between 26 and 34 mg Mn kg(-1) diet; the corresponding Mn supplementation (as MnSO4) ranged from 14 to 22 mg Mn kg(-1 )diet. The supplementation level can be reduced to 4.9 to 5.7 mg Mn kg(-1) diet by using Mn-gly as Mn source without compromising growth or Mn status of Atlantic salmon. High inclusion levels of Mn-gly (15 mg kg(-1) diet) was found to be not beneficial.
机译:研究了膳食锰(MN)水平和来源对饲养后鲑鱼(Salmo Salar)的生长和矿物成分的影响。制备七种实验饮食,并用渐进的补充水平的Mn;基础饮食的Mn浓度为15mg kg(-1),4次饮食,5,15,35和65mg kg(-1)补充Mn作为mnSO4和5次饮食,其中5毫克kg(-1)将Mn作为Mn-甘氨酸(Mn-Gly)的补充。大西洋鲑鱼(初始重量,307 +/- 25g)分配到21个罐(35条鱼/罐)。将这些鱼随机用一种实验饮食中的一种,以三份群体含量为8周。在第4周和第8周,收集全身,血浆,胆汁,肝脏和椎体样品,并测定它们的矿物质浓度。在第8周,通过剥离来测量表观可用性系数(AAC)来收集FEACE。既不纳入水平也不是源对增长和其他绩效指标产生重大影响。在第4周和第8周,血浆和胆汁Mn浓度受到饮食治疗的显着影响。而全身,肝脏和椎骨只在8周结束时显着反应。通过使用全身饱和度或组织MN状态作为响应标准,通过非线性回归模型估算了膳食MN等级所需的饮食MN水平。基于全体,椎骨,血浆和表观可用性的Mn浓度的估计分别为29.5 +/- 5.3,26.2 +/- 2.7,26.3 +/- 4.9和34 +/- 3.4mg Mn kg(-1)饮食。相对生物利用度指数的分析表明,低于Mn-Gly(5mg kg(-1)补充剂)的低含量比MnSO4更有效,以获得全身或组织Mn饱和水平。相反,高包含Mn-Gly(15mgKg(-1)补充)降低了Mn,锌(Zn)和铜(Cu)的AAC,以及组织中的较低Mn和Zn状态。维持组织Mn饱和所需的膳食Mn的平均估计范围在26至34mg MN kg(-1)型饮食之间;相应的Mn补充(如MnSO 4)的范围为14至22mg MN kg(-1)饮食。通过使用Mn-Gly作为Mn源,可以将补充水平降至4.9至5.7mg Mn Kg(-1)饮食,而不会损害大西洋鲑鱼的生长或MN状态。发现Mn-Gly的高包合物(15mg kg(-1)饮食)没有有益。

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