Central Queensland Universitygrid.1023.0, Institute for Future Farming Systems, Rockhampton, Queensland, Australia.
Appl Environ Microbiol. 2022 Sep 22;88(18):e0075822. doi: 10.1128/aem.00758-22. Epub 2022 Sep 12.
A range of antibiotic alternative products is increasingly studied and manufactured in the current animal agriculture, particularly in the poultry industry. Phytogenic feed additives are known for their remarkable ability to suppress pathogens such as spp., Escherichia coli, and Salmonella. Other than enhancing biosecurity, improvements in productivity and performance were also observed. However, clear mechanisms for these improvements were not established. In this study, 20,000 Lohman-Brown layers were provided with phytogenic supplement from 16 to 40 weeks of age, and performance parameters were assessed against the same number of unsupplemented control birds. The performance results showed that the birds with phytogenic supplementation presented consistently reduced mortality, increased rate of lay, and increased average egg weight. Functional analysis through shotgun sequencing of cecal metagenomes confirmed a substantial functional shift in the microbial community, showing that phytogen significantly reduced the range of microbial functions, including the production of essential vitamins, cofactors, energy, and amino acids. Functional data showed that phytogen supplementation induced a phenotypic shift in intestinal bacteria LPS phenotype toward the less pathogenic form. The study corroborates the use of phytogenic products in antibiotic-free poultry production systems. The productivity improvements in the number and weight of eggs produced during Spotty Liver Disease justify further optimizing phytogenic alternatives for use in high-risk open and free-range poultry systems. The present study establishes the beneficial effects of the continuous phytogenic supplementation reflected in reduced diarrhea and mortality and higher egg productivity under normal conditions and during a natural outbreak of Spotty Liver Disease. Our data points to the importance of phytogen-driven alteration of microbial pathogenicity and fitness-related functional capabilities revealed on the commercial layer farm. Phytogenic product showed an ability to improve the bird's welfare and sustainability in free-range poultry production systems.
当前的动物农业,尤其是家禽养殖业,越来越多地研究和生产各种抗生素替代品。植物源饲料添加剂以其抑制 spp.、大肠杆菌和沙门氏菌等病原体的显著能力而闻名。除了增强生物安全性外,还观察到生产力和性能的提高。然而,这些改进的确切机制尚未建立。在这项研究中,从 16 到 40 周龄,为 20000 只 Lohman-Brown 层鸡提供植物源补充剂,对相同数量的未补充对照鸟类进行性能参数评估。性能结果表明,添加植物源补充剂的鸟类死亡率持续降低,产蛋率提高,平均蛋重增加。通过对盲肠宏基因组进行 shotgun 测序的功能分析证实了微生物群落的功能发生了实质性转变,表明植物源显著减少了微生物功能的范围,包括必需维生素、辅酶、能量和氨基酸的产生。功能数据表明,植物源补充剂诱导了肠道细菌 LPS 表型向致病性较低的形式的表型转变。该研究证实了在无抗生素的家禽生产系统中使用植物源产品。在斑点肝疾病期间,产蛋数量和重量的生产力提高证明了进一步优化用于高风险开放式和自由放养家禽系统的植物源替代品的合理性。本研究确立了连续植物源补充的有益效果,反映在减少腹泻和死亡率以及在正常条件下和自然爆发斑点肝疾病期间提高产蛋生产力。我们的数据表明,植物源驱动的微生物致病性改变和与功能相关的功能能力的重要性,这些在商业层鸡场得到了揭示。植物源产品显示出改善自由放养家禽生产系统中鸟类福利和可持续性的能力。