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Digestive tract morphology and enzyme activities of juvenile diploid and triploid Atlantic salmon (Salmo salar) fed fishmeal-based diets with or without fish protein hydrolysates

机译:少年二倍体和三倍体大西洋鲑鱼(沙摩酱)的消化道形态和酶活性喂养鱼粉的饮食,或没有鱼蛋白质水解产物

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摘要

Triploid, sterile Atlantic salmon (Salmo salar) could make a contribution to the development of the farming industry, but uncertainties about the performance and welfare of triploids have limited their adoption by farmers. In this study, we compared the ontogeny of digestive tract morphology and enzyme activities (pepsin, trypsin, chymotrypsin, alkaline phosphatase and aminopeptidase) of diploid and triploid Atlantic salmon. Fish were fed diets based on fishmeal (STD) or a mix of fishmeal and hydrolysed fish proteins (HFM) whilst being reared at low temperature from start-feeding to completion of the parr-smolt transformation. Fish weights for each ploidy and feed combination were used to calculate thermal growth coefficients (TGCs) that spanned this developmental period, and the data were used to examine possible relationships between enzyme activities and growth. At the end of the experiment, faeces were collected and analyzed to determine the apparent digestibility coefficients (ADCs) of the dietary amino acids (AAs). Digestive tract histo-morphology did not differ substantially between ploidies and generally reflected organ maturation and functionality. There were no consistent differences in proteolytic enzyme activities resulting from the inclusion of HFM in the diet, nor was there improved digestibility and AA bioavailability of the HFM feed in either diploid or triploid fish. The triploid salmon had lower ADCs than diploids for most essential and non-essential AAs in both diets (STD and HFM), but without there being any indication of lower intestinal protease activity in triploid fish. When trypsin-to-chymotrypsin activity and trypsin and alkaline phosphatase (ALP) ratios (T:C and T:ALP, respectively) were considered in combination with growth data (TGC) low T:C and T:ALP values coincided with times of reduced fish growth, and vice versa, suggesting that T:C and T:ALP may be used to predict recent growth history and possible growth potential.
机译:三倍体,无菌大西洋鲑鱼(沙摩酱)可以对农业行业的发展做出贡献,但三倍体表现和福利的不确定性限制了农民的通过。在这项研究中,我们比较了二倍体和三倍体大西洋鲑鱼的消化道形态和酶活性(百事糖素,胰蛋白酶,胰蛋白酶,碱性磷酸酶和氨基肽)的组织发生。鱼类喂食饮食基于鱼粉(STD)或鱼炸弹和水解鱼蛋白(HFM)的混合物,同时在低温下从开始喂养到Parr-Smolt转化完成。用于每个倍增性和饲料组合的鱼权用于计算跨越该发育期间的热生长系数(TGC),并且数据用于检查酶活性和生长之间可能的关系。在实验结束时,收集并分析粪便以确定膳食氨基酸(AAS)的表观消化系数(ADC)。消化道组织形态没有大幅不同,并且通常反映器官成熟和功能。由于在饮食中包含HFM而导致的蛋白水解酶活性没有一致的差异,也没有改善二倍体或三倍体鱼中HFM饲料的可消化率和AA生物利用度。三倍体鲑鱼具有比饮食(STD和HFM)(STD和HFM)中最重要和非必需AA的二倍体的二倍体,但没有在三倍体鱼中表现下肠蛋白酶活性的任何指示。当胰蛋白酶 - 胰蛋白酶活性和胰蛋白酶和碱性磷酸酶(ALP)比率(分别用于生长数据(TGC)低T:C和T:ALP值与时间相结合减少鱼类生长,反之亦然,表明T:C和T:ALP可用于预测最近的增长历史和可能的增长潜力。

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