In-depth snapshot of the equine subgingival microbiome

被引:24
作者
Gao, Wenling [1 ]
Chan, Yuki [2 ]
You, Meng [1 ,3 ,4 ]
Lacap-Bugler, Donnabella C. [1 ,5 ]
Leung, W. Keung [1 ]
Watt, Rory M. [2 ]
机构
[1] Univ Hong Kong, Prince Philip Dent Hosp, Fac Dent, Oral Diag & Polyclin, 34 Hosp Rd, Sai Ying Pun, Hong Kong, Peoples R China
[2] Univ Hong Kong, Prince Philip Dent Hosp, Fac Dent, Oral Biosci, 34 Hosp Rd, Sai Ying Pun, Hong Kong, Peoples R China
[3] Sichuan Univ, Dept Oral Radiol, West China Coll Stomatol, Chengdu 610041, Peoples R China
[4] Sichuan Univ, State Key Lab Oral Dis, West China Coll Stomatol, Chengdu 610041, Peoples R China
[5] Auckland Univ Technol, Sch Appl Sci, Fac Hlth & Environm Sci, Private Bag 92006, Auckland 1142, New Zealand
关键词
Equine oral taxon (EOT); Oral microbiome; Periodontitis; Pyrosequencing; Spirochaetes; Synergistetes; DIGITAL DERMATITIS LESIONS; PERIODONTAL HEALTH; TREPONEMA SPP; ORAL-CAVITY; SP-NOV; FUSOBACTERIUM-NECROPHORUM; PORPHYROMONAS-GINGIVALIS; GEN; NOV; ACTINOBACILLUS-EQUULI; BACTERIAL DIVERSITY;
D O I
10.1016/j.micpath.2015.11.002
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
This study explored the range of bacterial taxa present within healthy subgingival (below the gum-line) niches in the horse oral cavity using 16S rRNA gene amplicon pyrosequencing. Pooled subgingival plaque samples were collected from approximately 200 sulcus sites from two horses (EQ1, EQ2) for analysis. A total of 14,260 quality-filtered pyrosequencing reads were obtained, which were assigned to 3875 operational taxonomic units (OTUs; 99% identity cut-off); 1907 OTUs for EQ1 and 2156 OTUs for EQ2. Diverse taxa from 12 phyla were identified, including Actinobacteria (3.17%), Bacteroidetes (25.11%), Chloroflexi (0.04%), Firmicutes (27.57%), Fusobacteria (5.15%), Proteobacteria (37.67%), Spirochaetes (0.15%), Synergistetes (0.22%), Tenericutes (0.16%), GN02 (0.19%), SR1 (0.01%) and TM7 (0.37%). Many OTUs were not closely related to known phylotypes, and may represent 'equine-specific' taxa. Phylotypes corresponding to Gammaproteobacteria were abundant, including Actinobacillus spp. (8.75%), unclassified Pasteurellaceae (9.90%) and Moraxella spp. (9.58%). PCR targeting the Synergistetes and Spirochaetes phyla was performed, and resultant plasmid libraries of 16S rRNA gene amplicons (ca. 1480 bp) were Sanger sequenced. Twenty-six Spirochaetes OTUs, and 16 Synergistetes OTUs were identified (99% identity cut-off). These 'species-level' OTUs were assigned Equine Oral Taxon (EOT) numbers, whose phylogenies and taxonomy were comprehensively investigated, in conjunction with corresponding Synergistetes and Spirochaetes OTUs identified by pyrosequencing. The vast majority of Spirochaetes taxa belonged to the genus Treponema, which corresponded to 7 of the 10 human oral treponeme phylogroups. Other Spirochaetes taxa belonging to the Leptospiraceae family were observed; but many treponemes commonly implicated in animal hoof/foot and non-oral soft tissue infections; e.g. Treponema phagedenis, Treponema pedis, Treponema refringens, Treponema calligyrum; were not identified here. Diverse Synergistetes taxa corresponding to oral clusters A and B were identified, which included Fretibacterium fastidiosum and Pyramidobacter piscolens. Taken together, our data reveals that equine sub gingival plaque microbiota shares many similarities with the human, canine and feline oral microbiomes. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:76 / 89
页数:14
相关论文
共 100 条
  • [11] PHYSIOLOGY AND EVOLUTION OF SPIROCHETES
    CANALEPAROLA, E
    [J]. BACTERIOLOGICAL REVIEWS, 1977, 41 (01) : 181 - 204
  • [12] trimAl: a tool for automated alignment trimming in large-scale phylogenetic analyses
    Capella-Gutierrez, Salvador
    Silla-Martinez, Jose M.
    Gabaldon, Toni
    [J]. BIOINFORMATICS, 2009, 25 (15) : 1972 - 1973
  • [13] A New Understanding of Oral and Dental Pathology of the Equine Cheek Teeth
    Casey, Miriam
    [J]. VETERINARY CLINICS OF NORTH AMERICA-EQUINE PRACTICE, 2013, 29 (02) : 301 - +
  • [14] Revised definition of Actinobacillus sensu stricto isolated from animals -: A review with special emphasis on diagnosis
    Christensen, H
    Bisgaard, M
    [J]. VETERINARY MICROBIOLOGY, 2004, 99 (01) : 13 - 30
  • [15] Christensen H, 2002, INT J SYST EVOL MICR, V52, P1569, DOI [10.1099/ijs.0.01637-0, 10.1099/00207713-52-5-1569]
  • [16] The Ribosomal Database Project: improved alignments and new tools for rRNA analysis
    Cole, J. R.
    Wang, Q.
    Cardenas, E.
    Fish, J.
    Chai, B.
    Farris, R. J.
    Kulam-Syed-Mohideen, A. S.
    McGarrell, D. M.
    Marsh, T.
    Garrity, G. M.
    Tiedje, J. M.
    [J]. NUCLEIC ACIDS RESEARCH, 2009, 37 : D141 - D145
  • [17] Comparisons of Subgingival Microbial Profiles of Refractory Periodontitis, Severe Periodontitis, and Periodontal Health Using the Human Oral Microbe Identification Microarray
    Colombo, Ana Paula V.
    Boches, Susan K.
    Cotton, Sean L.
    Goodson, J. Max
    Kent, Ralph
    Haffajee, Anne D.
    Socransky, Sigmund S.
    Hasturk, Hatice
    Van Dyke, Thomas E.
    Dewhirst, Floyd
    Paster, Bruce J.
    [J]. JOURNAL OF PERIODONTOLOGY, 2009, 80 (09) : 1421 - 1432
  • [18] Fusobacterium canifelinum sp nov., from the oral cavity of cats and dogs
    Conrads, G
    Citron, DM
    Mutters, R
    Jang, S
    Goldstein, EJC
    [J]. SYSTEMATIC AND APPLIED MICROBIOLOGY, 2004, 27 (04) : 407 - 413
  • [19] Comparison of the Fecal Microbiota of Healthy Horses and Horses with Colitis by High Throughput Sequencing of the V3-V5 Region of the 16S rRNA Gene
    Costa, Marcio C.
    Arroyo, Luis G.
    Allen-Vercoe, Emma
    Staempfli, Henry R.
    Kim, Peter T.
    Sturgeon, Amy
    Weese, J. Scott
    [J]. PLOS ONE, 2012, 7 (07):
  • [20] Histopathological lesions associated with equine periodontal disease
    Cox, Alistair
    Dixon, Padraic
    Smith, Sionagh
    [J]. VETERINARY JOURNAL, 2012, 194 (03) : 386 - 391