Dieryck Ines, Dejonghe Winnie, Van Hecke Wouter, Delacourt Joy, Bautil An, Courtin Christophe M, Vermeulen Daniel, Buyse Johan, Paeshuyse Jan
Laboratory of Host Pathogen Interactions, Department of Biosystems, KU Leuven, 3001 Leuven, Belgium.
Flemish Institute for Technological Research, 2400 Mol, Belgium.
Animals (Basel). 2023 Nov 14;13(22):3511. doi: 10.3390/ani13223511.
Although antibiotic resistance emerges naturally, this process has been accelerated by the worldwide overuse and misuse of antibiotics. It is essential to find effective alternatives in the broiler industry to improve poultry health while maintaining production efficiency and product safety. In this study, we aimed to evaluate a potential alternative: wood-derived xylo-oligosaccharides (XOS). The objective of this research was to investigate the potential of XOS prepared using enzymatic hydrolysis of beechwood xylan as a prebiotic feed supplement for broilers. A pilot study was conducted to explore the optimal XOS fraction profile by in vitro fermentation. Subsequently, a semi-continuous enzyme membrane reactor was used, allowing for the production of tailored XOS in large quantities. Given the strong bidirectional relationship between intestinal health, nutrition, and intestinal microbiota composition in broilers, an in vivo experiment was performed to explore the potential of XOS as a prebiotic feed supplement by investigating growth performance, feed conversion ratio, caecal short and medium chain fatty acid (SCFA and MCFA) concentration, and microbiological composition of the caecal content. Results from the pilot study indicated that higher enzyme concentrations in the hydrolysis process yield a product that leads to a higher total SCFA and MCFA- and butyric acid production during in vitro fermentation by caecal bacteria. Supplementation of the tailored XOS to the broiler diet (day 1 (d1)-d8 0.13% XOS, d9-d15 0.32% XOS) resulted in higher counts, beneficial to the health of birds, on d11 and d15.
尽管抗生素耐药性是自然产生的,但全球范围内抗生素的过度使用和滥用加速了这一过程。在肉鸡行业中找到有效的替代方案以改善家禽健康,同时维持生产效率和产品安全至关重要。在本研究中,我们旨在评估一种潜在的替代方案:木源低聚木糖(XOS)。本研究的目的是调查以山毛榉木聚糖酶解制备的XOS作为肉鸡益生元饲料添加剂的潜力。进行了一项初步研究,通过体外发酵探索最佳的XOS组分分布。随后,使用半连续酶膜反应器大量生产定制的XOS。鉴于肉鸡肠道健康、营养和肠道微生物群组成之间存在强烈的双向关系,进行了一项体内实验,通过研究生长性能、饲料转化率、盲肠短链和中链脂肪酸(SCFA和MCFA)浓度以及盲肠内容物的微生物组成,来探索XOS作为益生元饲料添加剂的潜力。初步研究结果表明,水解过程中较高的酶浓度产生的产物,在体外发酵过程中会导致盲肠细菌产生更高的总SCFA、MCFA和丁酸产量。在肉鸡日粮中添加定制的XOS(第1天(d1)至d8添加0.13%XOS,第9天至d15添加0.32%XOS),在第11天和第15天导致有益菌数量增加,对鸡的健康有益。