Evaluation of Nutritional Values of Defatted Black Soldier Fly (Hermetia illucens) Larvae Meal Using the Precision-Fed Cecectomized Rooster Assay

IF 2.9 2区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Journal of animal science Pub Date : 2025-03-13 DOI:10.1093/jas/skaf082
Julio C Mioto, Pamela L Utterback, Carl M Parsons, Sean D Madison, Jennifer L Adolphe, Maria R C de Godoy
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Abstract

The use of insects, such as black soldier fly (Hermetia illucens) larvae meal (BSFLM), as an alternative protein source for pet food has gained attention due to their high nutritional value. The objective of this study was to determine the chemical composition, amino acid digestibility, and protein quality of defatted BSFLM of two distinct substrates (wheat and corn, BSFLM-W and BSFLM-C). Whole egg powder (WEP) and chicken meal (CM) were used as reference protein sources commonly used in pet foods. Twenty cecectomized roosters (five per treatment) were randomly allocated to the test ingredients BSFLM-C, BSFLM-W, CM, and WEP. After 26 h of feed withdrawal, 20g of each ingredient were tube-fed, and excreta were collected for 48 h. Digestible indispensable amino acid score (DIAAS)-like values were calculated based on the Association of American Feed Control Officials (AAFCO), The European Pet Food Industry Federation (FEDIAF), and National Research Council (NRC) reference values for different life stages of dogs and cats. CM had the highest crude protein concentration (70.2%), followed by BSFLM-C (65.6%), BSFLM-W (59.8%), and WEP (51.2%). In general, WEP had higher amino acid digestibility than BSFLM and CM. BSFLM-C had comparable arginine digestibility to WEP, outperforming BSFLM-W and CM. BSFLM-C showed high AA digestibility, surpassing 75% for all indispensable amino acids, particularly exceeding CM. DIAAS-like values were calculated, revealing methionine + cysteine limitations for growing puppies and adult dogs in BSFLM-W, BSFLM-C, and CM according to AAFCO and FEDIAF. NRC identified methionine + cysteine as limiting for all sources in adult dogs. For growing kittens, methionine + cysteine and phenylalanine + tyrosine were limiting in BSFLM-W, BSFLM-C, and CM based on AAFCO and FEDIAF, while NRC and FEDIAF identified phenylalanine + tyrosine as limiting for WEP. For adult cats, phenylalanine + tyrosine were limiting in BSFLM-W, BSFLM-C, and CM according to AAFCO and FEDIAF, with NRC identifying it across all sources. In summary, BSFLM sources had high AA digestibility, comparable to traditional protein sources used in pet foods. When formulating diets for pets using BSFLM as the main protein source, methionine + cysteine and/or phenylalanine + tyrosine concentrations should be considered as they were the primary limiting amino acids.
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用精喂盲肠公鸡法评价脱脂黑兵蝇(Hermetia illucens)幼虫饲料的营养价值
利用黑兵蝇(Hermetia illucens)幼虫粉(BSFLM)等昆虫作为宠物食品的替代蛋白质来源,由于其高营养价值而受到关注。本研究的目的是测定两种不同底物(小麦和玉米,BSFLM- w和BSFLM- c)脱脂BSFLM的化学组成、氨基酸消化率和蛋白质品质。以宠物食品中常用的全蛋粉(WEP)和鸡粉(CM)作为参考蛋白来源。选取切除盲肠的公鸡20只(每处理5只),随机分为试验成分BSFLM-C、BSFLM-W、CM和WEP。停饲26 h后,每种原料各灌饲20g,收集排泄物48 h。根据美国饲料控制官员协会(AAFCO)、欧洲宠物食品工业联合会(FEDIAF)和国家研究委员会(NRC)不同生命阶段犬猫的参考值计算可消化必需氨基酸评分(DIAAS)样值。粗蛋白质含量以CM最高(70.2%),其次为BSFLM-C(65.6%)、BSFLM-W(59.8%)和WEP(51.2%)。总的来说,WEP的氨基酸消化率高于BSFLM和CM。BSFLM-C的精氨酸消化率与WEP相当,优于BSFLM-W和CM。BSFLM-C具有较高的AA消化率,对所有必需氨基酸的消化率均超过75%,其中对CM的消化率最高。根据AAFCO和FEDIAF计算diaas样值,揭示BSFLM-W、BSFLM-C和CM的生长幼犬和成年犬蛋氨酸+半胱氨酸限制。NRC将蛋氨酸+半胱氨酸确定为成年犬所有来源的极限。根据AAFCO和FEDIAF,蛋氨酸+半胱氨酸和苯丙氨酸+酪氨酸在BSFLM-W、BSFLM-C和CM中是极限,而NRC和FEDIAF认为苯丙氨酸+酪氨酸是WEP的极限。根据AAFCO和FEDIAF,对于成年猫,苯丙氨酸+酪氨酸在BSFLM-W、BSFLM-C和CM中是有限的,NRC在所有来源中都发现了它。综上所述,BSFLM来源具有较高的AA消化率,与宠物食品中使用的传统蛋白质来源相当。在制定以BSFLM为主要蛋白质来源的宠物饲粮时,应考虑蛋氨酸+半胱氨酸和/或苯丙氨酸+酪氨酸的浓度,因为它们是主要的限制性氨基酸。
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来源期刊
Journal of animal science
Journal of animal science 农林科学-奶制品与动物科学
CiteScore
4.80
自引率
12.10%
发文量
1589
审稿时长
3 months
期刊介绍: The Journal of Animal Science (JAS) is the premier journal for animal science and serves as the leading source of new knowledge and perspective in this area. JAS publishes more than 500 fully reviewed research articles, invited reviews, technical notes, and letters to the editor each year. Articles published in JAS encompass a broad range of research topics in animal production and fundamental aspects of genetics, nutrition, physiology, and preparation and utilization of animal products. Articles typically report research with beef cattle, companion animals, goats, horses, pigs, and sheep; however, studies involving other farm animals, aquatic and wildlife species, and laboratory animal species that address fundamental questions related to livestock and companion animal biology will be considered for publication.
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