薤对肉鸡生长性能、肝肾功能指标、微生物菌群和饲料消化率的影响

Chamberlin Tchantchou Djamen, Camile Kondo Nyembo, Tadjong Ruben Ngouana, Gilchrist Deffo Tchouan, Mikael Donfack, Achille Bernard Tagne Fokam, Jean Raphaël Kana
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摘要

导言:由于人们对微生物抗药性和动物产品中抗生素残留积累的担忧,全球禁止将抗生素作为饲料添加剂,这促使研究人员探索天然替代品。这些替代品可调节肠道微生物群,提高动物生产性能。本研究旨在评估薤白对肉鸡生产性能的影响:共对 280 只日龄肉用仔鸡进行了 42 天的观察。在对雏鸡进行性别鉴定后,将其随机分为五组,每组 14 只,共四次重复。对照组饲喂不含添加剂的饲料(R0-)。处理组包括对照组日粮,每公斤基础日粮和每升饮用水中分别添加 1 克抗生素强力霉素®(R0+)和每公斤基础饲料和每升饮用水中添加 5 克大蒜(RAs)。为便于口服,溶液被五味子果核中的木炭吸收,吸收率分别为每公斤日粮 100 克和每升饮用水 100 毫升。研究参数包括生长性能、微生物菌群、肝肾功能指标和饲料消化率:结果表明,与阴性对照组相比,无论采用哪种给药方式,薤白都能显著降低肉鸡的采食量、饲料转化率、血清天冬氨酸氨基转移酶、丙氨酸氨基转移酶和尿素水平。与阴性对照组相比,通过饲料和饮用水给药时,大蒜能显著提高活重、增重和乳酸菌数量。无论采用哪种给药方式,给肉鸡喂食大蒜对饲料成分的消化率影响都不大:总之,大蒜可以有效地作为肉鸡日粮或饮水中的饲料添加剂,在不损害肝肾功能的情况下促进肉鸡的生长。本研究结果有助于消除人们对抗生素耐药性和家禽产品中抗生素残留的担忧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Allium sativum on Growth Performance, Kidney and Liver Function Markers, Microbial Flora and Feed Digestibility in Broiler Chickens
Introduction: The global ban on antibiotics as a feed additive, prompted by concerns over microbial resistance and the accumulation of antibiotic residues in animal products, has urged researchers to explore natural alternatives. These alternatives modulate the gut microbiota and enhance animal production performance. This study aimed to assess the impact of Allium sativum on the production performance of broiler chickens. Materials and methods: A total of 280 day-old broiler chicks were examined for 42 days. After being sexed, they were randomly allocated into five groups, each consisting of 14 chicks, with four replications. The control group was fed on a ration without additives (R0-). The treatment groups consisted of a control diet supplemented with 1 g of antibiotic Doxycycline® per kg of basal diet and per liter of drinking water (R0+) and 5 g garlic per kg of basal feed and also per liter of drinking water (RAs), respectively. To facilitate the oral administration, the solution was absorbed by charcoal from the fruit stones of Canarium schweinfurthii at a rate of 100 g and 100 ml per kg of diet and per liter of drinking water, respectively. The investigated parameters included growth performance, microbial flora, markers of kidney, and liver function, and feed digestibility. Results: The results revealed Allium sativum significantly decreased feed intake, feed conversion ratio, serum aspartate aminotransferase, alanine aminotransferase, and urea levels regardless of the administration mode in broiler chickens, compared to the negative control. When administered through both feed and drinking water, garlic significantly increased live weight, weight gain, and lactic acid bacteria count, compared to the negative control. Feeding garlic to broilers had insignificantly affected the digestibility of feed components irrespective of the administration mode. Conclusion: In conclusion, Allium sativum can effectively serve as a feed additive in broiler diets or drinking water, promoting growth performance without harming kidney and liver functions. The present findings help address concerns about antibiotic resistance and residues in poultry products.
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