健康马匹上呼吸道和下呼吸道的微生物种群各不相同,但在肺部的生物地理区域内却不尽相同。

IF 1.3 3区 农林科学 Q2 VETERINARY SCIENCES Journal of Equine Veterinary Science Pub Date : 2024-06-27 DOI:10.1016/j.jevs.2024.105141
Rebecca C. Bishop , Alessandro Migliorisi , Jessica R. Holmes , Ann M. Kemper , Mark Band , Scott Austin , Brian Aldridge , Pamela A. Wilkins
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引用次数: 0

摘要

了解呼吸道区域内的正常微生物种群至关重要,因为不同的区域条件为微生物菌群创造了不同的生存环境,而共生微生物的大量繁殖很可能会导致临床呼吸道疾病。该研究旨在描述健康马匹呼吸道不同位置微生物种群的变异性。研究人员通过鼻咽灌洗(NPL)、经气管抽吸(TTA)和支气管肺泡灌洗(BAL)采集了四匹健康成年马肺内六个不同区域的样本。进行了全长 16S 核糖体 DNA 测序和微生物特征分析。结果发现了大量的多样性,共鉴定出超过 1797 个 ASV,经过尖端聚集和流行率过滤后减少到 94 个类群。不同马匹、样本类型和 BAL 地点的分类群数量和多样性差异很大。固缩菌、蛋白菌和放线菌是主要的类群。NPL、TTA 和 BAL 之间的丰富度(Chao1,p=0.02)和系统发育多样性(FaithPD,p=0.01)存在明显差异。样本类型(p=0.03)和马(p=0.005)对 Bray-Curtis 成分多样性有显著影响,而加权 Unifrac 指标仅受简化样本类型的影响(NPL 和 TTA 与 BAL 相比,p=0.04)。在阿尔法或贝塔多样性统计检验中,BAL 在肺内的位置没有明显影响。总体研究结果表明,上呼吸道和下呼吸道位置的微生物种群具有多样性,但肺部六个生物地理区域的微生物种群没有明显差异。
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Microbial populations vary between the upper and lower respiratory tract, but not within biogeographic regions of the lung of healthy horses

Understanding normal microbial populations within areas of the respiratory tract is essential, as variable regional conditions create different niches for microbial flora, and proliferation of commensal microbes likely contributes to clinical respiratory disease. The objective was to describe microbial population variability between respiratory tract locations in healthy horses. Samples were collected from four healthy adult horses by nasopharyngeal lavage (NPL), transtracheal aspirate (TTA), and bronchoalveolar lavage (BAL) of six distinct regions within the lung. Full-length 16S ribosomal DNA sequencing and microbial profiling analysis was performed. There was a large amount of diversity, with over 1797 ASVs identified, reduced to 94 taxa after tip agglomeration and prevalence filtering. Number of taxa and diversity were highly variable across horses, sample types, and BAL locations. Firmicutes, proteobacteria, and actinobacteria were the predominant phyla. There was a significant difference in richness (Chao1, p = 0.02) and phylogenetic diversity (FaithPD, p = 0.01) between NPL, TTA, and BAL. Sample type (p = 0.03) and horse (p = 0.005) contributed significantly to Bray-Curtis compositional diversity, while Weighted Unifrac metric was only affected by simplified sample type (NPL and TTA vs BAL, p = 0.04). There was no significant effect of BAL locations within the lung with alpha or beta diversity statistical tests. Overall findings support diverse microbial populations that were variable between upper and lower respiratory tract locations, but with no apparent difference in microbial populations of the six biogeographic regions of the lung, suggesting that BAL fluid obtained blindly by standard clinical techniques may be sufficient for future studies in healthy horses.

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来源期刊
Journal of Equine Veterinary Science
Journal of Equine Veterinary Science 农林科学-兽医学
CiteScore
2.70
自引率
7.70%
发文量
249
审稿时长
77 days
期刊介绍: Journal of Equine Veterinary Science (JEVS) is an international publication designed for the practicing equine veterinarian, equine researcher, and other equine health care specialist. Published monthly, each issue of JEVS includes original research, reviews, case reports, short communications, and clinical techniques from leaders in the equine veterinary field, covering such topics as laminitis, reproduction, infectious disease, parasitology, behavior, podology, internal medicine, surgery and nutrition.
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