Erinle Taiwo Joseph, Boulianne Martine, Miar Younes, Scales Robert, Adewole Deborah
Department of Animal Science and Aquaculture, Faculty of Agriculture, Dalhousie University, Truro NS, B2N 5E3, Canada.
Department of Clinical Sciences, Faculty of Veterinary Medicine, University of Montreal, 3200 Sicotte Street, Saint-Hyacinthe QC, J2S 2M2, Canada.
Anim Nutr. 2022 Nov 21;13:64-77. doi: 10.1016/j.aninu.2022.11.001. eCollection 2023 Jun.
As the human population increases globally, the food animal industry has not been spared from the monumental demand for edible animal products, particularly meat. This has necessitated the simultaneous expansion of the productivity of the animal sector to meet the ever-growing human needs. Although antibiotics have been used in food animal production with commendable positive impacts on their growth performance, their sole contributive factor to the increasing incidence of antimicrobial resistance has ushered the strict restrictions placed on their use in the animal sector. This has handed a setback to both animals and farmers; thus, the intense push for a more sustainable antibiotic alternative for use in animal production. The use of plants with concentrated phytogenic compounds has gained much interest due to their beneficial bioactivities, including antioxidant and selective antimicrobial. While the reported beneficial activities of phytogenic additives on animals vary due to their varying total polyphenol concentrations (TPC), red osier dogwood (ROD) plant materials boast of high TPC with excellent antioxidant prowess and growth improvement capacities compared to some plant extracts commonly used in research. However, its adoption in research and commercial scale is still low. Thus, the present review aims to provide concise information on the dietary potential of ROD plant materials in animal feeding.
随着全球人口的增长,食用动物产品,尤其是肉类的巨大需求也影响到了食用动物产业。这就需要同时提高动物产业的生产力,以满足人类不断增长的需求。尽管抗生素在食用动物生产中的使用对动物生长性能产生了值得称赞的积极影响,但它们对抗菌素耐药性发病率上升的唯一促成因素导致了对其在动物产业中使用的严格限制。这给动物和养殖户都带来了挫折;因此,人们强烈推动在动物生产中使用更可持续的抗生素替代品。由于具有有益的生物活性,包括抗氧化和选择性抗菌作用,含有浓缩植物化合物的植物的使用引起了广泛关注。虽然由于植物源添加剂总多酚浓度(TPC)不同,其对动物的有益活性报道也有所不同,但与研究中常用的一些植物提取物相比,红瑞木(ROD)植物材料具有较高的TPC,具有出色的抗氧化能力和促进生长的能力。然而,其在研究和商业规模上的应用仍然很少。因此,本综述旨在提供关于红瑞木植物材料在动物饲料中的潜在应用的简要信息。