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作为牲畜补充剂和动物饲料:全面综述。

as a Livestock Supplement and Animal Feed: A Comprehensive Review.

作者信息

Gadzama Ishaya Usman, Ray Saraswati, Méité René, Mugweru Isaac Maina, Gondo Takudzwa, Rahman Md Atikur, Redoy Md Rahat Ahmad, Rohani Md Fazle, Kholif Ahmed Eid, Salahuddin Md, Brito Andre F

机构信息

School of Agriculture and Food Sustainability, University of Queensland, Gatton, QLD 4343, Australia.

School of Environmental and Rural Science, Faculty of Science, Agriculture, Business and Law (SABL), University of New England, Armidale, NSW 2351, Australia.

出版信息

Animals (Basel). 2025 Mar 19;15(6):879. doi: 10.3390/ani15060879.

Abstract

This review explores the potential of (CLV) as an alternative supplement in animal feed. CLV is rich in essential nutrients including fatty acids, amino acids, vitamins, and minerals, as well as bioactive compounds such as antioxidants, which contribute to its health-promoting properties. The nutritional composition of CLV can vary depending on factors such as cultivation methods, nutrient availability, light intensity, temperature, water pH, strain, and processing techniques. The rigid cell wall of the microalga limits nutrient accessibility, particularly in monogastric animals. However, processing techniques such as enzymatic treatments can disrupt the cell wall, enhancing nutrient bioavailability and improving its utility as a feed ingredient. Research across livestock species has demonstrated the positive effects of CLV supplementation. For instance, CLV has improved milk production and composition in ruminants, modulated rumen microbiota, enhanced lamb growth, and elevated blood immunoglobulin levels. Moreover, the impact of CLV on ruminal fermentation is dose-dependent, with higher inclusion rates exhibiting more pronounced effects, and it may also play a role in mitigating methane emissions. In poultry, CLV supplementation leads to better growth, feed conversion ratios, immune responses, and meat and egg quality. Similarly, studies on pigs suggest that CLV can benefit immune response and fatty acid profiles, while in rabbits, CLV has been found to reduce oxidative stress and improve immune responses. Additionally, CLV has shown promise in aquaculture, improving feed utilization, immunity, and disease resistance in various fish species. While CLV shows considerable potential, the variability in animal responses and the need for optimized inclusion levels necessitate further species-specific research to elucidate the long-term implications of its inclusion in animal diets.

摘要

本综述探讨了小球藻(CLV)作为动物饲料替代补充剂的潜力。小球藻富含必需营养素,包括脂肪酸、氨基酸、维生素和矿物质,以及生物活性化合物如抗氧化剂,这些都有助于其促进健康的特性。小球藻的营养成分会因种植方法、养分可利用性、光照强度、温度、水的pH值、菌株和加工技术等因素而有所不同。微藻坚硬的细胞壁限制了营养物质的可及性,特别是在单胃动物中。然而,诸如酶处理等加工技术可以破坏细胞壁,提高营养物质的生物利用度,并改善其作为饲料成分的效用。对各种家畜物种的研究表明了补充小球藻的积极效果。例如,小球藻提高了反刍动物的产奶量和奶品质,调节了瘤胃微生物群,促进了羔羊生长,并提高了血液免疫球蛋白水平。此外,小球藻对瘤胃发酵的影响是剂量依赖性的,更高的添加率表现出更明显的效果,并且它还可能在减轻甲烷排放方面发挥作用。在家禽中,补充小球藻可带来更好的生长、饲料转化率、免疫反应以及肉和蛋的品质。同样,对猪的研究表明小球藻有益于免疫反应和脂肪酸谱,而在兔子中,已发现小球藻可降低氧化应激并改善免疫反应。此外,小球藻在水产养殖中也显示出前景,可提高各种鱼类的饲料利用率、免疫力和抗病能力。虽然小球藻显示出相当大的潜力,但动物反应的变异性以及对优化添加水平的需求使得有必要进行进一步的物种特异性研究,以阐明其添加到动物日粮中的长期影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae49/11939222/4769ddc43269/animals-15-00879-g001.jpg

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