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胃肠道微生物群中的细菌与生长改善和饲料转化率相关:鉴定性能增强益生菌面临的挑战。

Bacteria within the Gastrointestinal Tract Microbiota Correlated with Improved Growth and Feed Conversion: Challenges Presented for the Identification of Performance Enhancing Probiotic Bacteria.

作者信息

Stanley Dragana, Hughes Robert J, Geier Mark S, Moore Robert J

机构信息

Institute for Future Farming Systems, Central Queensland UniversityRockhampton, QLD, Australia; Poultry Cooperative Research Centre, University of New England, ArmidaleNSW, Australia.

Poultry Cooperative Research Centre, University of New England, ArmidaleNSW, Australia; Pig and Poultry Production Institute, South Australian Research and Development Institute, RoseworthySA, Australia; School of Animal and Veterinary Sciences, The University of Adelaide, RoseworthySA, Australia.

出版信息

Front Microbiol. 2016 Feb 19;7:187. doi: 10.3389/fmicb.2016.00187. eCollection 2016.

Abstract

Identification of bacteria associated with desirable productivity outcomes in animals may offer a direct approach to the identification of probiotic bacteria for use in animal production. We performed three controlled chicken trials (n = 96) to investigate caecal microbiota differences between the best and poorest performing birds using four performance measures; feed conversion ratio (FCR), utilization of energy from the feed measured as apparent metabolisable energy, gain rate (GR), and amount of feed eaten (FE). The shifts in microbiota composition associated with the performance measures were very different between the three trials. Analysis of the caecal microbiota revealed that the high and low FCR birds had significant differences in the abundance of some bacteria as demonstrated by shifts in microbiota alpha and beta diversity. Trials 1 and 2 showed significant overall community shifts, however, the microbial changes driving the difference between good and poor performers were very different. Lachnospiraceae, Ruminococcaceae, and Erysipelotrichaceae families and genera Ruminococcus, Faecalibacterium and multiple lineages of genus Clostridium (from families Lachnospiraceae, Ruminococcaceae, and Erysipelotrichaceae) were highly abundant in good FCR birds in Trial 1. Different microbiota was associated with FCR in Trial 2; Catabacteriaceae and unknown Clostridiales family members were increased in good FCR and genera Clostridium (from family Clostridiaceae) and Lactobacillus were associated with poor FCR. Trial 3 had only mild microbiota differences associated with all four performance measures. Overall, the genus Lactobacillus was correlated with feed intake which resulted in poor FCR performance. The genus Faecalibacterium correlated with improved FCR, increased GR and reduced FE. There was overlap in phylotypes correlated with improved FCR and GR, while different microbial cohorts appeared to be correlated with FE. Even under controlled conditions different cohorts of birds developed distinctly different microbiotas. Within the different trial groups the abundance of certain bacterial groups correlated with productivity outcomes. However, with different underlying microbiotas there were different bacteria correlated with performance. The challenge will be to identify probiotic bacteria that can reliably deliver favorable outcomes from diverse microbiotas.

摘要

鉴定与动物理想生产性能结果相关的细菌,可能为鉴定用于动物生产的益生菌提供一种直接方法。我们进行了三项对照鸡试验(n = 96),使用四项生产性能指标来研究表现最佳和最差的鸡之间盲肠微生物群的差异;饲料转化率(FCR)、以表观代谢能衡量的饲料能量利用率、增重率(GR)和采食量(FE)。三项试验中,与生产性能指标相关的微生物群组成变化差异很大。盲肠微生物群分析表明,高FCR组和低FCR组的某些细菌丰度存在显著差异,这通过微生物群α和β多样性的变化得以证明。试验1和试验2显示出显著的总体群落变化,然而,导致表现好与差的鸡之间差异的微生物变化却大不相同。在试验1中,高FCR组的鸡中毛螺菌科、瘤胃球菌科和丹毒丝菌科以及瘤胃球菌属、粪杆菌属和多个梭菌属谱系(来自毛螺菌科、瘤胃球菌科和丹毒丝菌科)的丰度很高。试验2中与FCR相关的微生物群不同;高FCR组中,卡特杆菌科和未知的梭菌目家族成员增加,而梭菌属(来自梭菌科)和乳杆菌属与低FCR相关。试验3中,与所有四项生产性能指标相关的微生物群差异仅为轻度。总体而言,乳杆菌属与采食量相关,这导致FCR表现不佳。粪杆菌属与FCR改善、GR增加和FE降低相关。与FCR改善和GR相关的系统发育型存在重叠,而不同的微生物群落似乎与FE相关。即使在受控条件下,不同组的鸡也会形成明显不同的微生物群。在不同的试验组中,某些细菌群的丰度与生产性能结果相关。然而,由于潜在的微生物群不同,与生产性能相关的细菌也不同。挑战将是鉴定能够从不同微生物群中可靠地产生有利结果的益生菌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d435/4760072/245d6f6af136/fmicb-07-00187-g001.jpg

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