Hartinger Kristina, Greinix Julia, Thaler Nathalie, Ebbing Marco Antonio, Yacoubi Nadia, Schedle Karl, Gierus Martin
Department of Agrobiotechnology, Institute of Animal Nutrition, Livestock Products, and Nutrition Physiology (TTE), IFA-Tulln, University of Natural Resources and Life Sciences, 1190 Vienna, Austria.
Evonik Operations GmbH- Nutrition and Care, Rodenbacher Chaussee 4, 63457 Hanau-Wolfgang, Germany.
Animals (Basel). 2021 May 31;11(6):1628. doi: 10.3390/ani11061628.
The usage of insects as an alternative protein source for broiler feeds may help to reduce the dependency on soybean meal (SBM) imports. Therefore, the present study aimed to evaluate the replacement of 15 (SL15) or 30% (SL30) of crude protein (CP) from SBM with (HI) defatted larvae meal regarding broiler performance, carcass traits, apparent ileal digestibility, intestinal morphology, and microbial metabolites. Concerning the performance, body weight was similar for the control (CON) and SL15, but lower for SL30 during all feeding phases. In addition, average daily feed intake was higher in SL15 and SL30 compared to CON in the starter phase, but this effect vanished during grower and finisher phase. The apparent ileal digestibility decreased for CP and some amino acids with increasing HI larvae meal in the diet. No or marginal alterations were observed for the intestinal morphometry as well as cecal microbial metabolites. In conclusion, partial replacement of 15% SBM CP with HI larvae meal in broiler diets without impairing animal performance or health seems possible. The growth suppression with 30% CP substitution may be caused by reduced apparent ileal digestibility but could not be clearly associated with adverse effects of hindgut fermentation or altered gut morphology.
将昆虫用作肉鸡饲料的替代蛋白质来源可能有助于减少对豆粕进口的依赖。因此,本研究旨在评估用黑水虻(HI)脱脂幼虫粉替代豆粕中15%(SL15)或30%(SL30)的粗蛋白(CP)对肉鸡生长性能、胴体性状、回肠表观消化率、肠道形态和微生物代谢产物的影响。在生长性能方面,对照组(CON)和SL15组的体重相似,但在所有饲养阶段,SL30组的体重较低。此外,在起始阶段,SL15和SL30组的平均日采食量高于CON组,但在生长育肥阶段这种影响消失。随着日粮中HI幼虫粉含量的增加,CP和一些氨基酸的回肠表观消化率降低。在肠道形态测量以及盲肠微生物代谢产物方面未观察到或仅观察到轻微变化。总之,在不影响动物生长性能或健康的情况下,用HI幼虫粉部分替代肉鸡日粮中15%的豆粕CP似乎是可行的。30%CP替代导致的生长抑制可能是由于回肠表观消化率降低,但与后肠发酵的不利影响或肠道形态改变并无明显关联。