Department of Animal Sciences, University of Illinois at Urbana-Champaign, Urbana, IL.
EnviroFlight, Yellow Springs, OH.
J Anim Sci. 2020 Jan 1;98(1). doi: 10.1093/jas/skz363.
Edible insects such as black soldier fly larvae (BSFL) are alternative protein sources for animal feeds due to their high-protein content and potential low environmental footprint. However, protein quality and AA content may vary across insect species and age. Our objective was to determine the effects of age on nutrient and AA digestibility of BSFL intended for use in pet foods using the precision-fed cecectomized rooster assay. All animal procedures were approved by the University of Illinois Institutional Animal Care and Use Committee prior to experimentation. Twenty-four cecectomized roosters (four roosters per substrate) were randomly assigned to test substrates [BSFL0 = day 0 (day of hatch); BSFL11 = day 11; BSFL14 = day 14; BSFL18 = day 18; BSFL23 = day 23; BSFL29 = day 29]. After 24 h of feed withdrawal, roosters were tube-fed 20 g of test substrates. Following crop intubation, excreta were collected for 48 h. Endogenous corrections for AA were made using five additional cecectomized roosters. All data were analyzed using a completely randomized design and the GLM procedure of SAS 9.4. DM and OM digestibilities were not different among substrates, but acid-hydrolyzed fat digestibility tended to be greater (P < 0.10) for BSFL23 and BSFL29 than BSFL14 and BSFL18. Although all substrates had a high digestibility, BSFL0 and BSFL11 had the lowest (P < 0.05) digestibilities for most indispensable and dispensable AA. Digestible indispensable AA score (DIAAS)-like values were calculated to determine protein quality according to AAFCO nutrient profiles and NRC recommended allowances for dogs and cats. In general, BSFL18 had the highest, and BSFL11 had the lowest DIAAS-like values for most indispensable AA. Threonine, methionine, and tryptophan were often the first-limiting AA. Our results suggest that BSFL are a high-quality protein and AA source, but that age can affect the AA digestibility and protein quality of this alternative protein source.
食用昆虫,如黑水虻幼虫(BSFL),由于其高蛋白含量和潜在的低环境足迹,是动物饲料的替代蛋白质来源。然而,蛋白质质量和 AA 含量可能因昆虫种类和年龄而异。我们的目的是使用精确喂养去盲肠公鸡测定法确定年龄对宠物食品用 BSFL 营养物质和 AA 消化率的影响。所有动物程序在实验前均获得伊利诺伊大学机构动物护理和使用委员会的批准。24 只去盲肠公鸡(每个基质 4 只公鸡)被随机分配到测试基质[BSFL0 = 孵化日(第 0 天);BSFL11 = 第 11 天;BSFL14 = 第 14 天;BSFL18 = 第 18 天;BSFL23 = 第 23 天;BSFL29 = 第 29 天]。禁食 24 小时后,公鸡通过管饲喂食 20 g 测试基质。在盲肠插管后,收集粪便 48 小时。使用另外 5 只去盲肠公鸡进行 AA 的内源校正。所有数据均使用 SAS 9.4 的完全随机设计和 GLM 过程进行分析。DM 和 OM 消化率在基质之间没有差异,但 BSFL23 和 BSFL29 的酸水解脂肪消化率似乎高于 BSFL14 和 BSFL18(P < 0.10)。尽管所有基质的消化率都很高,但 BSFL0 和 BSFL11 对大多数必需和非必需 AA 的消化率最低(P < 0.05)。根据 AAFCO 营养成分谱和 NRC 对狗和猫的推荐允许量,计算可消化必需 AA 评分(DIAAS)样值以确定蛋白质质量。一般来说,BSFL18 对大多数必需 AA 的 DIAAS 样值最高,而 BSFL11 最低。苏氨酸、蛋氨酸和色氨酸通常是第一限制 AA。我们的结果表明,BSFL 是一种高质量的蛋白质和 AA 来源,但年龄会影响这种替代蛋白质来源的 AA 消化率和蛋白质质量。