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鱼粉、鱼类成分及鱼蛋白水解物作为宠物食品的潜在成分。

Fish meals, fish components, and fish protein hydrolysates as potential ingredients in pet foods.

作者信息

Folador J F, Karr-Lilienthal L K, Parsons C M, Bauer L L, Utterback P L, Schasteen C S, Bechtel P J, Fahey G C

机构信息

University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.

出版信息

J Anim Sci. 2006 Oct;84(10):2752-65. doi: 10.2527/jas.2005-560.

Abstract

An experiment to determine the chemical composition and protein quality of 13 fish substrates (pollock by-products, n = 5; fish protein hydrolysates, n = 5; and fish meals, n = 3) was conducted. Two of these substrates, salmon protein hydrolysate (SPH) and salmon meal with crushed bones (SMB), were used to determine their palatability as components of dog diets. Pollock by-products differed in concentrations of CP, crude fat, and total AA by 71, 79, and 71%, respectively, and GE by 4.1 kcal/g. Fish protein hydrolysates and fish meals were less variable (approximately 18, 14, and 17%, and 1.4 kcal/g, respectively). Biogenic amine concentrations were much higher in fish protein hydrolysates as compared with pollock by-products and fish meals. Pollock liver and viscera had the highest total fatty acid concentrations; however, red salmon hydrolysate and SMB had the highest total PUFA concentrations (49.63 and 48.60 mg/g, respectively). Salmon protein hydrolysate had the highest protein solubility in 0.2% KOH. Based on calculations using immobilized digestive enzyme assay values, lysine digestibility of fish meal substrates was comparable to in vivo cecectomized rooster assay values and averaged approximately 90.3%. Also, pollock milt, pollock viscera, red salmon hydrolysate, and sole hydrolysate had comparable values as assessed by immobilized digestive enzyme assay and rooster assays. A chick protein efficiency ratio (PER) assay compared SMB and SPH to a whole egg meal control and showed that SMB had high protein quality (PER = 3.5), whereas SPH had poor protein quality (PER value less than 1.5). However, using whole egg meal as the reference protein, both fish substrates were found to be good protein sources with an essential AA index of 1.0 and 0.9 for SMB and SPH, respectively. In the dog palatability experiments, a chicken-based control diet and 2 diets containing 10% of either SPH or SMB were tested. Dogs consumed more of the SPH diet compared with the control, and similar amounts of the SMB and control diets. The intake ratios for each were 0.73 and 0.52, respectively. Salmon protein hydrolysate was especially palatable to dogs. These data suggest that chemical composition and nutritional quality of fish substrates differ greatly and are affected by the specific part of the fish used to prepare fish meals and fish protein hydrolysates.

摘要

开展了一项实验,以测定13种鱼类底物(狭鳕鱼副产物,n = 5;鱼蛋白水解物,n = 5;鱼粉,n = 3)的化学成分和蛋白质质量。其中两种底物,即鲑鱼蛋白水解物(SPH)和带碎骨的鲑鱼粉(SMB),被用于测定其作为犬粮成分时的适口性。狭鳕鱼副产物的粗蛋白(CP)、粗脂肪和总氨基酸(AA)浓度分别相差71%、79%和71%,总能(GE)相差4.1千卡/克。鱼蛋白水解物和鱼粉的变异性较小(分别约为18%、14%和17%,以及1.4千卡/克)。与狭鳕鱼副产物和鱼粉相比,鱼蛋白水解物中的生物胺浓度要高得多。狭鳕鱼肝脏和内脏的总脂肪酸浓度最高;然而,红鲑鱼水解物和SMB的总多不饱和脂肪酸(PUFA)浓度最高(分别为49.63和48.60毫克/克)。鲑鱼蛋白水解物在0.2%氢氧化钾中的蛋白质溶解度最高。根据固定化消化酶测定值进行计算,鱼粉底物中赖氨酸的消化率与体内切除盲肠公鸡测定值相当,平均约为90.3%。此外,通过固定化消化酶测定和公鸡测定评估,狭鳕鱼精巢、狭鳕鱼内脏、红鲑鱼水解物和鳎鱼水解物的值相当。一项雏鸡蛋白质效率比(PER)测定将SMB和SPH与全蛋粉对照进行比较,结果显示SMB的蛋白质质量较高(PER = 3.5),而SPH的蛋白质质量较差(PER值小于1.5)。然而,以全蛋粉作为参考蛋白,发现两种鱼类底物都是优质蛋白质来源,SMB和SPH的必需氨基酸指数分别为1.0和0.9。在犬适口性实验中,测试了一种以鸡肉为基础的对照日粮以及两种分别含有10% SPH或SMB的日粮。与对照日粮相比,犬对含SPH日粮的摄入量更多,对含SMB日粮和对照日粮的摄入量相近。每种日粮的摄入比例分别为0.73和0.52。鲑鱼蛋白水解物对犬特别适口。这些数据表明,鱼类底物的化学成分和营养质量差异很大,并且受到用于制备鱼粉和鱼蛋白水解物的鱼的特定部位的影响。

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