Institute for Future Farming Systems, Central Queensland University, Rockhampton, QLD, 4702, Australia.
Sci Rep. 2022 Jun 30;12(1):11033. doi: 10.1038/s41598-022-14925-0.
Consumer push towards open and free-range production systems makes biosecurity on farms challenging, leading to increased disease and animal welfare issues. Phytogenic products are increasingly becoming a viable alternative for the use of antibiotics in livestock production. Here we present a study of the effects of commercial phytogenic supplement containing menthol, carvacrol and carvone on intestinal microbiota of layer hens, microbial functional capacity, and intestinal morphology. A total of 40,000 pullets were randomly assigned to two sides of the experimental shed. Growth performance, mortality, egg production and egg quality parameters were recorded throughout the trial period (18-30 weeks of age). Microbial community was investigated using 16S amplicon sequencing and functional difference using metagenomic sequencing. Phytogen supplemented birds had lower mortality and number of dirty eggs, and their microbial communities showed reduced richness. Although phytogen showed the ability to control the range of poultry pathogens, its action was not restricted to pathogenic taxa, and it involved functional remodelling the intestinal community towards increased cofactor production, heterolactic fermentation and salvage and recycling of metabolites. The phytogen did not alter the antimicrobial resistance profile or the number of antibiotic resistance genes. The study indicates that phytogenic supplementation can mimic the action of antibiotics in altering the gut microbiota and be used as their alternative in industry-scale layer production.
消费者对开放式和自由放养生产系统的推动,使得农场的生物安全面临挑战,导致疾病和动物福利问题增加。植物源产品越来越成为畜牧业生产中抗生素替代品的可行选择。在这里,我们研究了一种含有薄荷脑、香芹酚和香芹酮的商业植物源补充剂对蛋鸡肠道微生物群、微生物功能能力和肠道形态的影响。总共 4 万只育雏鸡被随机分配到实验棚的两侧。在整个试验期间(18-30 周龄)记录生长性能、死亡率、产蛋率和蛋品质量参数。使用 16S 扩增子测序研究微生物群落,使用宏基因组测序研究功能差异。补充植物源的鸟类死亡率和脏蛋数量较低,其微生物群落的丰富度降低。尽管植物源显示出控制家禽病原体范围的能力,但它的作用不仅限于病原分类群,还涉及对肠道群落进行功能重塑,以增加辅助因子的产生、异型乳酸发酵以及代谢物的回收和再利用。植物源没有改变抗生素耐药性谱或抗生素耐药基因的数量。该研究表明,植物源补充剂可以模拟抗生素改变肠道微生物群的作用,并可作为替代抗生素在工业规模蛋鸡生产中的应用。