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Development of growth rate, body lipid, moisture, and energy models for white sturgeon ( Acipenser transmontanus ) fed at various feeding rates

机译:以不同的喂食速度喂食的白色st鱼(Acipenser transmontanus)的生长速率,体脂,水分和能量模型的发展

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The objectives were to develop and evaluate: 1) growth rate models, 2) body lipid, moisture, and energy models for white sturgeon fed at various feeding rates (FR; % body weight [BW] per day) and then evaluate responses at proportions of optimum feeding rate (OFR) across increasing BW (g). For objective 1, 19 datasets from the literature containing initial BW, FR and specific growth rate (SGR; % BW increase per day) were used. For objective 2, 12 datasets from the literature (11 from objective 1) containing SGR, FR, final BW, body lipid (%), protein (%), ash (%), moisture (%), and energy (kJ/g) were used. The average rearing temperatures was 19.2?±?1.5 °C (mean?±?SD). The average nutrient compositions and gross energy of the diets were 45.7?±?4.3% protein, 14.8?±?3.2% lipid, and 20.4?±?1.3?kJ/g, respectively. The logistic model was used for objectives 1 and 2 to develop a statistical relationship between SGR and FR, then an iterative technique was used to estimate OFR for each dataset. For objective 2, the statistical relationship between body lipid, energy, and moisture and FR was established. Using the OFR estimate, SGR, body lipid, energy and moisture were computed at various FR as a proportion of OFR. Finally, a nonparametric fitting procedure was used to establish relationships between SGR, body lipid, energy and moisture (responses) compared with BW (predictor) at various proportions of OFR. This allows visualization of the effect of under- or over-feeding on the various responses. When examining the differences between OFR at 100% and various proportions of OFR, SGR differences decrease and moisture differences increase as BW increases. Lipid and energy differences decrease as BW increases. To our knowledge, these are the first description of changes in nutrient compositions when white sturgeon are fed at various FR. Because physiological and behavioral properties that are unique to sturgeon, results from this study are specific to sturgeon under the conditions of this study and cannot be compared directly with salmonids even if some of the results are similar. This research provides insight to designing future nutritional studies in sturgeon.
机译:目的是开发和评估:1)以各种喂养率(FR;每天体重%[BW])喂养的白st鱼的生长率模型,2)体脂,水分和能量模型,然后按比例评估响应体重增加(g)的最佳进料速度(OFR)。对于目标1,使用了来自文献的19个数据集,其中包含初始体重,FR和比生长率(SGR;每天体重增加%)。对于目标2,文献中的12个数据集(目标1中的11个)包含SGR,FR,最终体重,体脂(%),蛋白质(%),灰分(%),水分(%)和能量(kJ / g )。平均饲养温度为19.2±1.5℃(平均±SD)。日粮的平均营养成分和总能量分别为蛋白质45.7±±4.3%,脂质14.8±±3.2%和20.4±±1.3?kJ / g。将逻辑模型用于目标1和2,以建立SGR和FR之间的统计关系,然后使用迭代技术估算每个数据集的OFR。对于目标2,建立了体内脂质,能量,水分和FR之间的统计关系。使用OFR估算值,可以计算各种FR下SGR,体脂,能量和水分占OFR的比例。最后,使用非参数拟合程序来建立在不同比例的OFR下与BW(预测变量)相比,SGR,体脂,能量和水分(响应)之间的关系。这可以可视化显示进料不足或进料对各种响应的影响。当检查100%的OFR与不同比例的OFR之间的差异时,随着BW的增加,SGR差异减小,水分差异增大。血脂和能量差异随体重增加而减少。据我们所知,这是当以不同的FR喂食白色st鱼时营养成分变化的第一个描述。因为st鱼具有独特的生理和行为特性,所以本研究的结果在此研究条件下特定于st鱼,即使某些结果相似,也无法直接与鲑鱼进行比较。该研究为设计未来urge鱼营养研究提供了见识。

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