Potential use of garlic products in ruminant feeding: A review

IF 6.3
He Ding , Changjin Ao , Xiaoqing Zhang
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引用次数: 1

Abstract

The addition of antibiotics as growth promoters to ruminant feed can result in bacterial resistance and antibiotic residues in ruminant products. Correspondingly, there is serious public concern regarding the presence of antibiotic residue in ruminant products and the consequent threat to human health. As a result, the addition of plants and their products to ruminant feeds, as an alternative to antibiotics, has received much attention recently. Garlic and its products are rich in organosulphur compounds, which have a variety of biological activities and have been widely used as natural additives in animal production. This review presents recent knowledge on the addition of garlic products (powder, skin, oil, leaf and extracts) to the diets of ruminants. In this paper, garlic products are evaluated with respect to their chemical composition, bioactive compounds, and their impacts on the rumen ecosystem, antioxidant status, immune response, parasitic infection, growth performance and product quality of ruminants. This review provides valuable guidance and a theoretical basis for the development of garlic products as green, highly efficient and safe additives, with the aims of promoting ruminant growth and health, reducing methane emissions and improving ruminant product quality. Garlic extracts have the potential to control parasite infections by decreasing the faecal egg count. Garlic powder, oil and allicin are able to reduce the methane emissions of ruminants. Organosulphur compounds such as allicin, which is present in garlic products, have the potential to inhibit membrane lipid synthesis of the archaeal community, thus influencing the population of methanogenic archaea and resulting in a reduction in methane emissions. Some garlic products are also able to increase the average daily gain (garlic skin, water extract, and leaf) and the feed conversion ratio (garlic skin and leaf) of ruminants. Garlic stalk silage fed to sheep has the potential to improve the nutritional value of mutton by increasing the concentrations of linoleic and linolenic acids and essential amino acids. Sheep fed a diet containing garlic powder or oil are able to produce milk with higher concentrations of the conjugated linoleic acids and n-3 fatty acids, which has health benefits for consumers, due to the widely recognized positive impact of n-3 polyunsaturated fatty acids and conjugated linoleic acids on human heart health, improving platelet aggregation, vasodilation and thrombotic tendency. Overall, garlic products have the potential to enhance growth performance and product quality and reduce parasite infections, as well as methane emissions of ruminants.

Abstract Image

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大蒜制品在反刍动物饲养中的潜在用途:综述
在反刍动物饲料中添加抗生素作为生长促进剂会导致反刍动物产品中的细菌耐药性和抗生素残留。相应地,公众对反刍动物产品中抗生素残留的存在及其对人类健康的威胁表示严重关切。因此,在反刍动物饲料中添加植物及其产品,作为抗生素的替代品,最近受到了广泛关注。大蒜及其制品富含有机硫化物,具有多种生物活性,已被广泛用作动物生产中的天然添加剂。这篇综述介绍了在反刍动物的饮食中添加大蒜产品(粉末、皮、油、叶和提取物)的最新知识。本文对大蒜制品的化学成分、生物活性化合物及其对反刍动物瘤胃生态系统、抗氧化状态、免疫反应、寄生虫感染、生长性能和产品质量的影响进行了评价。这篇综述为开发绿色、高效、安全的大蒜产品添加剂提供了宝贵的指导和理论依据,目的是促进反刍动物的生长和健康,减少甲烷排放,提高反刍动物产品质量。大蒜提取物有可能通过减少粪蛋数量来控制寄生虫感染。大蒜粉、大蒜油和大蒜素能够减少反刍动物的甲烷排放。大蒜产品中存在的大蒜素等有机硫化合物有可能抑制古菌群落的膜脂合成,从而影响产甲烷古菌的数量,从而减少甲烷排放。一些大蒜产品还能够提高反刍动物的平均日增重(大蒜皮、水提取物和叶子)和饲料转化率(大蒜皮和叶子)。大蒜秸秆青贮饲料通过提高亚油酸、亚麻酸和必需氨基酸的浓度,有可能提高羊肉的营养价值。食用含有大蒜粉或大蒜油的绵羊能够生产出含有更高浓度共轭亚油酸和n-3脂肪酸的牛奶,这对消费者的健康有益,因为n-3多不饱和脂肪酸和共轭亚油酸对人类心脏健康具有广泛公认的积极影响,可以改善血小板聚集、血管舒张和血栓形成趋势。总的来说,大蒜产品有可能提高生长性能和产品质量,减少寄生虫感染以及反刍动物的甲烷排放。
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来源期刊
Animal Nutrition
Animal Nutrition Animal Science and Zoology
CiteScore
9.70
自引率
0.00%
发文量
542
审稿时长
65 days
期刊介绍: Animal Nutrition encompasses the full gamut of animal nutritional sciences and reviews including, but not limited to, fundamental aspects of animal nutrition such as nutritional requirements, metabolic studies, body composition, energetics, immunology, neuroscience, microbiology, genetics and molecular and cell biology related to primarily to the nutrition of farm animals and aquatic species. More applied aspects of animal nutrition, such as the evaluation of novel ingredients, feed additives and feed safety will also be considered but it is expected that such studies will have a strong nutritional focus. Animal Nutrition is indexed in SCIE, PubMed Central, Scopus, DOAJ, etc.
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