Individual and Combined Effects of a Direct-Fed Microbial and Calcium Butyrate on Growth Performance, Intestinal Histology and Gut Microbiota of Broiler Chickens

IF 3.9 3区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE World's Poultry Science Journal Pub Date : 2023-02-22 DOI:10.3390/poultry2010008
B. Adhikari, Alyson G. Myers, C. Ruan, Y. Kwon, S. Rochell
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Abstract

This study evaluated the effects of a Bacillus direct-fed microbial and microencapsulated calcium butyrate fed individually and in combination, as compared to an antibiotic growth promoter, on growth performance, processing characteristics, intestinal morphology, and intestinal microbiota of Ross 708 broilers reared from 0 to 47 d post-hatch. Dietary treatments included: (1) a negative control with no antimicrobial (NC), (2) a positive control diet containing bacitracin methylene disalicylate (PC), (3) a diet containing a Bacillus direct-fed microbial (CS), (4) a diet containing microencapsulated calcium butyrate (BP), and (5) a diet containing both CS and BP. Treatments were replicated with 10 pens of 20 birds each. From 0 to 15 d post-hatch, the FCR of broilers fed the PC, CS, BP, and CS + BP diets were lower (p < 0.05) than those fed the NC diet, but treatment effects (p > 0.05) were not observed on subsequent performance. BP supplementation improved (p < 0.05) total breast meat weight and yield at processing. Intestinal histology was not influenced (p > 0.05) by the treatment. Analysis of the jejunal microbiota collected at 15 d post-hatch revealed that the genus SMB53 was significantly lower for the CS group, and Sporanaerobacter was lower in the CS and CS + BP groups compared with the NC (p < 0.05). The jejunal microbiota from broilers in the CS + BP group had higher (p < 0.05) alpha and beta diversities compared with broilers fed the NC and CS diets. The results reflected synergistic effects between CS and BP in modulating the jejunal microbiota at 15 d that may have been related to enhanced feed efficiency (i.e., lower FCR) observed during this period.
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直接饲喂微生物制剂和丁酸钙对肉鸡生长性能、肠道组织学和肠道微生物群的单独和联合影响
本研究评估了与抗生素生长促进剂相比,芽孢杆菌直接饲喂微生物和微胶囊化丁酸钙单独饲喂和组合饲喂对罗斯708肉鸡孵化后0 ~ 47 d生长性能、加工特性、肠道形态和肠道微生物群的影响。饲粮处理包括:(1)阴性对照组(NC)、(2)阳性对照组(PC)、(3)直接投喂微生物芽孢杆菌(CS)、(4)微胶囊化丁酸钙(BP)和(5)微胶囊化丁酸钙和BP同时投喂。实验用10个围栏重复处理,每个围栏20只鸟。孵化后0 ~ 15 d, PC、CS、BP和CS + BP饲粮的肉仔鸡FCR均低于NC饲粮(p < 0.05),但对后续生产性能无显著影响(p < 0.05)。添加BP提高了胸肉加工时的总重和产量(p < 0.05)。治疗对肠道组织学无明显影响(p < 0.05)。孵化后15 d的空肠微生物群分析显示,CS组的SMB53属数量显著低于NC组(p < 0.05), CS组和CS + BP组的Sporanaerobacter数量显著低于NC组(p < 0.05)。CS + BP组肉鸡空肠微生物群α和β多样性高于NC和CS组(p < 0.05)。该结果反映了15 d时CS和BP在调节空肠微生物群方面的协同效应,这可能与此期间观察到的饲料效率提高(即饲料转化率降低)有关。
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来源期刊
World's Poultry Science Journal
World's Poultry Science Journal 农林科学-奶制品与动物科学
CiteScore
6.10
自引率
7.40%
发文量
55
审稿时长
12-24 weeks
期刊介绍: World''s Poultry Science Journal is the official publication of the World’s Poultry Science Association. The journal provides authoritative reviews in poultry science and an international forum for the exchange and dissemination of information including research, education and industry organisation. Each issue includes poultry industry-related news, regional reports on global developments in poultry, reports from specialist scientific working groups, book reviews, association news and a calendar of forthcoming events. Coverage includes breeding, nutrition, welfare, husbandry, production systems, processing, product development, physiology, egg and meat quality, industry structure, economics and education. The journal is of interest to academics, researchers, students, extension workers and commercial poultry producers.
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