Obianwuna Uchechukwu Edna, Chang Xinyu, Oleforuh-Okoleh Vivian U, Onu Patience N, Zhang Haijun, Qiu Kai, Wu Shugeng
National Engineering Research Center of Biological Feed, Institute of Feed Research, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
Department of Animal Science, Rivers State University, Port Harcourt, Rivers State, Nigeria.
J Anim Sci Biotechnol. 2024 Dec 9;15(1):169. doi: 10.1186/s40104-024-01101-9.
As the global population continues to expand, the demand for broiler chicken production to supply safe and high-quality meat is increasing. To meet this ever-growing demand, broiler chickens with enhanced growth performance are being developed, but they often face challenges related to oxidative stress, which can adversely affect gut health. Phytobiotics, which are plant-derived feed additives known for their antimicrobial, antioxidant, immune-modulating, and growth-promoting properties, have emerged as promising natural alternatives to synthetic antibiotics. This review consolidates recent advancements in the use of phytobiotics-derived products from leaves, roots, seeds, flowers, and their extracts in broiler diets reared under standard experimental conditions, without the introduction of stressors. The focus is on elucidating the key mechanisms through which phytobiotics improve gut health, including their effects on gut morphology, integrity, microflora composition, antioxidant capacity, and immune function. The review highlights the potential of phytobiotics to revolutionize broiler nutrition by acting as natural enhancers of gut health. Research findings reveal that phytobiotics significantly improve intestinal health, and boost growth performance, offering a sustainable approach to managing to gut dysfunction. These findings indicate a potential shift in how gut-health related challenges in broilers can be addressed, moving towards natural phytobiotic therapy. However, several challenges persist. Optimizing the dosage of phytobiotics, ensuring consistent performance, and overcoming the limitations related to their extraction and application are key areas requiring further investigation. The review emphasizes the importance of continued research to refine phytobiotic formulations, explore synergistic effects, and incorporate advanced technologies such as AI-driven methods and precision nutrition to tailor feeding strategies more effectively. Additionally, the development of innovative delivery systems, such as nanoencapsulation, is suggested as a way to enhance the effectiveness and reliability of phytobiotics. By highlighting the potential of phytobiotics to revolutionize broiler nutrition, this review supports the poultry industry's shift towards antibiotic-free and sustainable dietary solutions, offering new perspectives on the future of broiler chicken production.
随着全球人口持续增长,对肉鸡生产以供应安全优质肉类的需求也在不断增加。为满足这一不断增长的需求,生长性能得到增强的肉鸡正在被培育,但它们常常面临与氧化应激相关的挑战,这可能会对肠道健康产生不利影响。植物源生物活性物质是一种植物性饲料添加剂,以其抗菌、抗氧化、免疫调节和促进生长的特性而闻名,已成为合成抗生素有前景的天然替代品。本综述总结了在标准实验条件下饲养的肉鸡日粮中使用源自叶子、根、种子、花及其提取物的植物源生物活性物质产品的最新进展,且未引入应激源。重点是阐明植物源生物活性物质改善肠道健康的关键机制,包括它们对肠道形态、完整性、微生物群落组成、抗氧化能力和免疫功能的影响。该综述强调了植物源生物活性物质作为肠道健康的天然增强剂对肉鸡营养进行革新的潜力。研究结果表明,植物源生物活性物质能显著改善肠道健康并提高生长性能,为应对肠道功能障碍提供了一种可持续的方法。这些发现表明,在解决肉鸡肠道健康相关挑战方面可能会发生转变,朝着天然植物源生物活性物质疗法发展。然而,仍存在一些挑战。优化植物源生物活性物质的剂量、确保性能一致以及克服与其提取和应用相关的限制是需要进一步研究的关键领域。该综述强调了持续研究以优化植物源生物活性物质配方、探索协同效应并纳入如人工智能驱动方法和精准营养等先进技术以更有效地定制饲养策略的重要性。此外,建议开发创新的递送系统,如纳米包封,以提高植物源生物活性物质的有效性和可靠性。通过强调植物源生物活性物质对肉鸡营养进行革新的潜力,本综述支持家禽业向无抗生素和可持续日粮解决方案的转变,为肉鸡生产的未来提供了新的视角。