Korbelik Juraj, Singh Ameet, Rousseau Joyce, Weese J Scott
Department of Pathobiology, Ontario Veterinary College, University of Guelph, 50 Stone Road E, Guelph, Ontario, Canada, N1G 2W1.
Department of Clinical Studies, Ontario Veterinary College, University of Guelph, 50 Stone Road E, Guelph, Ontario, Canada, N1G 2W1.
Vet Dermatol. 2019 Jun;30(3):228-e70. doi: 10.1111/vde.12734. Epub 2019 Mar 4.
Otitis externa is a common multifactorial disease in dogs. The diversity of the cutaneous microbiota in dogs appears to decrease in diseased states. However, little is known about the microbiota of the canine ear and how it is altered by disease.
HYPOTHESIS/OBJECTIVES: To describe the otic bacterial microbiota in dogs with otitis externa compared to healthy dogs.
Samples were collected from 18 dogs with clinical and cytological evidence of otitis externa, and eight clinically normal dogs without cytological evidence of otitis externa.
DNA from each sample was isolated and Illumina sequencing of the V4 hypervariable region of the 16S rRNA gene amplicons was performed. Sequences were processed using the bioinformatics software MOTHUR.
Bacteria from 27 different phyla were identified. Affected ears had significantly decreased alpha diversity when compared to healthy ears. Community structure and membership also differed between the two groups. Linear discriminant analysis effect size analysis identified 153 operational taxonomic units (OTUs) that were differentially abundant. Eleven OTUs were over-represented in the affected ears, including Staphylococcus, Pseudomonas and Parvimonas.
The otic bacterial microbiota is much more complex than has been identified with previous culture-based studies; otitis externa is accompanied by broad and complex differences in the microbiota.
外耳道炎是犬类常见的多因素疾病。患病状态下犬类皮肤微生物群的多样性似乎会降低。然而,关于犬耳部微生物群及其如何因疾病而改变,我们知之甚少。
假设/目标:描述患有外耳道炎的犬与健康犬的耳部细菌微生物群。
从18只具有外耳道炎临床和细胞学证据的犬以及8只无外耳道炎细胞学证据的临床正常犬采集样本。
分离每个样本的DNA,并对16S rRNA基因扩增子的V4高变区进行Illumina测序。使用生物信息学软件MOTHUR对序列进行处理。
鉴定出27个不同门的细菌。与健康耳部相比,患病耳部的α多样性显著降低。两组之间的群落结构和成员也有所不同。线性判别分析效应大小分析确定了153个差异丰富的可操作分类单元(OTU)。11个OTU在患病耳部中过度富集,包括葡萄球菌、假单胞菌和微小单胞菌。
耳部细菌微生物群比以往基于培养的研究所确定的要复杂得多;外耳道炎伴随着微生物群广泛而复杂的差异。