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Identification and Characterization of Potential Performance-Related Gut Microbiotas in Broiler Chickens across Various Feeding Trials

机译:各种饲养试验中肉鸡潜在性能相关肠道菌群的鉴定和表征

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摘要

Three broiler feeding trials were investigated in order to identify gut bacteria consistently linked with improvements in bird performance as measured by feed efficiency. Trials were done in various geographic locations and varied in diet composition, broiler breed, and bird age. Gut microbial communities were investigated using microbial profiling. Eight common performance-linked operational taxonomic units (OTUs) were identified within both the ilea (180, 492, and 564–566) and ceca (140–142, 218–220, 284–286, 312, and 482) across trials. OTU 564–566 was associated with lower performance, while OTUs 140–142, 482, and 492 were associated with improved performance. Targeted cloning and sequencing of these eight OTUs revealed that they represented 26 bacterial species or phylotypes which clustered phylogenetically into seven groups related to Lactobacillus spp., Ruminococcaceae, Clostridiales, Gammaproteobacteria, Bacteroidales, Clostridiales/Lachnospiraceae, and unclassified bacteria/clostridia. Where bacteria were identifiable to the phylum level, they belonged predominantly to the Firmicutes, with Bacteroidetes and Proteobacteria also identified. Some of the potential performance-related phylotypes showed high sequence identity with classified bacteria (Lactobacillus salivarius, Lactobacillus aviarius, Lactobacillus crispatus, Faecalibacterium prausnitzii, Escherichia coli, Gallibacterium anatis, Clostridium lactatifermentans, Ruminococcus torques, Bacteroides vulgatus, and Alistipes finegoldii). The 16S rRNA gene sequence information generated will allow quantitative assays to be developed which will enable elucidations of which of these phylotypes are truly performance related. This information could be used to monitor strategies to improve feed efficiency and feed formulation for optimal gut health.
机译:对三个肉鸡饲养试验进行了调查,以鉴定与饲喂效率相一致的肠道细菌与禽类生产性能的提高保持一致。在不同的地理位置进行了试验,试验的饮食组成,肉鸡品种和鸟类年龄各不相同。肠道微生物群落使用微生物谱进行了调查。在整个试验中,在回肠(180、492和564–566)和盲肠(140–142、218–220、284–286、312和482)中都确定了八个常见的与绩效相关的操作分类单位(OTU)。 OTU 564–566与较低的性能有关,而OTU 140–142、482和492与改善的性能有关。对这8个OTU的靶向克隆和测序表明,它们代表了26种细菌或系统型,它们在系统发育上聚类为与乳杆菌属,瘤胃球菌,梭菌,丙种细菌,拟杆菌,梭菌/梭状芽孢杆菌和未分类细菌/梭菌有关的7个组。在细菌可鉴定为门菌素水平的地方,它们主要属于硬毛菌纲,同时还鉴定了拟杆菌和变形杆菌。一些潜在的与性能相关的系统型显示出与分类细菌(唾液乳杆菌,鸟形乳杆菌,crispatatus,crie prausnitzii,大肠杆菌,Gallibacterium anatis, Clostridium lactatifermentans Ruminococcus扭矩 Bacteroides vulgatus 细小金龟子 em>)。生成的16S rRNA基因序列信息将允许进行定量分析,从而阐明这些系统类型中哪些与性能真正相关。该信息可用于监测提高饲料效率和饲料配方以实现最佳肠道健康的策略。

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