Detection of Campylobacter jejuni in rectal swab samples from Rousettus amplexicaudatus in the Philippines

Bats are the second diversity species of mammals and widely distributed in the world. They are thought to be reservoir and vectors of zoonotic pathogens. However, there is scarce report of the evidence of pathogenic bacteria kept in bats. The precise knowledge of the pathogenic bacteria in bat micro...

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Published inJournal of Veterinary Medical Science Vol. 78; no. 8; pp. 1347 - 1350
Main Authors HATTA, Yuki, OMATSU, Tsutomu, TSUCHIAKA, Shinobu, KATAYAMA, Yukie, TANIGUCHI, Satoshi, MASANGKAY, Joseph S, PUENTESPINA, Roberto, Jr, ERES, Eduardo, COSICO, Edison, UNE, Yumi, YOSHIKAWA, Yasuhiro, MAEDA, Ken, KYUWA, Shigeru, MIZUTANI, Tetsuya
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Published Japan JAPANESE SOCIETY OF VETERINARY SCIENCE 01.08.2016
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Abstract Bats are the second diversity species of mammals and widely distributed in the world. They are thought to be reservoir and vectors of zoonotic pathogens. However, there is scarce report of the evidence of pathogenic bacteria kept in bats. The precise knowledge of the pathogenic bacteria in bat microbiota is important for zoonosis control. Thus, metagenomic analysis targeting the V3-V4 region of the 16S rRNA of the rectal microbiota in Rousettus amplexicaudatus was performed using high throughput sequencing. The results revealed that 103 genera of bacteria including Camplyobacter were detected. Campylobacter was second predominant genus, and Campylobacter coli and Campylobacter jejuni were identified in microbiome of R. amplexicaudatus. Campylobacteriosis is one of the serious bacterial diarrhea in human, and the most often implicated species as the causative agent of campylobacteriosis is C. jejuni. Therefore, we investigated the prevalence of C. jejuni in 91 wild bats with PCR. As a result of PCR assay targeted on 16S-23S intergenic spacer, partial genome of C. jejuni was detected only in five R. amplexicaudatus. This is the first report that C. jejuni was detected in bat rectal swab samples. C. jejuni is the most common cause of campylobacteriosis in humans, transmitted through water and contact with livestock animals. This result indicated that R. amplexicaudatus may be a carrier of C. jejuni.
AbstractList Bats are the second diversity species of mammals and widely distributed in the world. They are thought to be reservoir and vectors of zoonotic pathogens. However, there is scarce report of the evidence of pathogenic bacteria kept in bats. The precise knowledge of the pathogenic bacteria in bat microbiota is important for zoonosis control. Thus, metagenomic analysis targeting the V3-V4 region of the 16S rRNA of the rectal microbiota in Rousettus amplexicaudatus was performed using high throughput sequencing. The results revealed that 103 genera of bacteria including Camplyobacter were detected. Campylobacter was second predominant genus, and Campylobacter coli and Campylobacter jejuni were identified in microbiome of R. amplexicaudatus. Campylobacteriosis is one of the serious bacterial diarrhea in human, and the most often implicated species as the causative agent of campylobacteriosis is C. jejuni. Therefore, we investigated the prevalence of C. jejuni in 91 wild bats with PCR. As a result of PCR assay targeted on 16S-23S intergenic spacer, partial genome of C. jejuni was detected only in five R. amplexicaudatus. This is the first report that C. jejuni was detected in bat rectal swab samples. C. jejuni is the most common cause of campylobacteriosis in humans, transmitted through water and contact with livestock animals. This result indicated that R. amplexicaudatus may be a carrier of C. jejuni.
Bats are the second diversity species of mammals and widely distributed in the world. They are thought to be reservoir and vectors of zoonotic pathogens. However, there is scarce report of the evidence of pathogenic bacteria kept in bats. The precise knowledge of the pathogenic bacteria in bat microbiota is important for zoonosis control. Thus, metagenomic analysis targeting the V3-V4 region of the 16S rRNA of the rectal microbiota in Rousettus amplexicaudatus was performed using high throughput sequencing. The results revealed that 103 genera of bacteria including Camplyobacter were detected. Campylobacter was second predominant genus, and Campylobacter coli and Campylobacter jejuni were identified in microbiome of R. amplexicaudatus . Campylobacteriosis is one of the serious bacterial diarrhea in human, and the most often implicated species as the causative agent of campylobacteriosis is C. jejuni . Therefore, we investigated the prevalence of C. jejuni in 91 wild bats with PCR. As a result of PCR assay targeted on 16S-23S intergenic spacer, partial genome of C. jejuni was detected only in five R. amplexicaudatus . This is the first report that C. jejuni was detected in bat rectal swab samples. C. jejuni is the most common cause of campylobacteriosis in humans, transmitted through water and contact with livestock animals. This result indicated that R. amplexicaudatus may be a carrier of C. jejuni .
Author MASANGKAY, Joseph S
MAEDA, Ken
ERES, Eduardo
TSUCHIAKA, Shinobu
COSICO, Edison
OMATSU, Tsutomu
MIZUTANI, Tetsuya
KYUWA, Shigeru
HATTA, Yuki
YOSHIKAWA, Yasuhiro
TANIGUCHI, Satoshi
UNE, Yumi
KATAYAMA, Yukie
PUENTESPINA, Roberto, Jr
Author_xml – sequence: 1
  fullname: HATTA, Yuki
  organization: Research and Education Center for Prevention of Global Infectious Diseases of Animals, Tokyo University of Agriculture and Technology, 3–5–8 Saiwai-cho, Fuchu-shi, Tokyo 183–8509, Japan
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  fullname: OMATSU, Tsutomu
  organization: Research and Education Center for Prevention of Global Infectious Diseases of Animals, Tokyo University of Agriculture and Technology, 3–5–8 Saiwai-cho, Fuchu-shi, Tokyo 183–8509, Japan
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  fullname: TSUCHIAKA, Shinobu
  organization: Research and Education Center for Prevention of Global Infectious Diseases of Animals, Tokyo University of Agriculture and Technology, 3–5–8 Saiwai-cho, Fuchu-shi, Tokyo 183–8509, Japan
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  fullname: KATAYAMA, Yukie
  organization: Research and Education Center for Prevention of Global Infectious Diseases of Animals, Tokyo University of Agriculture and Technology, 3–5–8 Saiwai-cho, Fuchu-shi, Tokyo 183–8509, Japan
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  fullname: TANIGUCHI, Satoshi
  organization: Special Pathogens Laboratory, Department of Virology I, National Institute of Infectious Diseases, 4–7–1 Gakuen, Musashimurayama, Tokyo 208–0011, Japan
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  fullname: MASANGKAY, Joseph S
  organization: College of Veterinary Medicine, University of the Philippine Los Baños, 4031 Los Baños, Laguna, Philippines
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  fullname: PUENTESPINA, Roberto, Jr
  organization: University of the Philippines Mindanao, Bago-Oshiro, Davao, Philippines
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  fullname: ERES, Eduardo
  organization: Museum of Natural History, University of the Philippines Los Baños, 4031 Los Baños, Laguna, Philippines
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  fullname: COSICO, Edison
  organization: Museum of Natural History, University of the Philippines Los Baños, 4031 Los Baños, Laguna, Philippines
– sequence: 10
  fullname: UNE, Yumi
  organization: Laboratory of Veterinary Pathology, School of Veterinary Medicine, Azabu University, 1–17–1 Fuchinobe, Sagamihara, Kanagawa 252–5201, Japan
– sequence: 11
  fullname: YOSHIKAWA, Yasuhiro
  organization: Department of Animal Risk Management, Chiba Institute of Science, Choshi, Chiba 288–0025, Japan
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  fullname: MAEDA, Ken
  organization: Laboratory of Veterinary Microbiology, Joint Faculty of Veterinary Medicine, Yamaguchi University, 1677–1 Yoshida, Yamaguchi 753–8515, Japan
– sequence: 13
  fullname: KYUWA, Shigeru
  organization: Department of Biomedical Science, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1–1–1 Yayoi, Bunkyo-ku, Tokyo 113–8657, Japan
– sequence: 14
  fullname: MIZUTANI, Tetsuya
  organization: Research and Education Center for Prevention of Global Infectious Diseases of Animals, Tokyo University of Agriculture and Technology, 3–5–8 Saiwai-cho, Fuchu-shi, Tokyo 183–8509, Japan
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Cites_doi 10.1126/science.288.5470.1432
10.1078/1438-4639-00096
10.1086/319760
10.1128/CMR.00006-15
10.2174/2212798410901010075
10.1016/j.fm.2014.05.001
10.1067/mem.2002.121521
10.1038/ismej.2011.41
10.2460/ajvr.2001.62.190
10.1128/AEM.01018-12
10.1128/JB.90.2.375-379.1965
10.1128/JVI.75.7.3268-3276.2001
10.3201/eid0101.950107
10.7589/0090-3558-45.4.952
10.1016/S1286-4579(01)01522-2
10.1086/340266
10.1038/nature11234
10.3201/eid2006.130956
10.1016/j.ijfoodmicro.2005.08.015
10.1126/science.1165115
10.1073/pnas.82.20.6955
10.1016/S0140-6736(83)91698-7
10.1128/AEM.71.9.5085-5088.2005
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References 6. Chua, K. B., Bellini, W. J., Rota, P. A., Harcourt, B. H., Tamin, A., Lam, S. K., Ksiazek, T. G., Rollin, P. E., Zaki, S. R., Shieh, W., Goldsmith, C. S., Gubler, D. J., Roehrig, J. T., Eaton, B., Gould, A. R., Olson, J., Field, H., Daniels, P., Ling, A. E., Peters, C. J., Anderson, L. J. and Mahy, B. W. 2000. Nipah virus: a recently emergent deadly paramyxovirus. Science 288: 1432–1435.
1. Adesiyun, A. A., Stewart-Johnson, A. and Thompson, N. N. 2009. Isolation of enteric pathogens from bats in Trinidad. J. Wildl. Dis. 45: 952–961.
4. Baffone, W., Casaroli, A., Citterio, B., Pierfelici, L., Campana, R., Vittoria, E., Guaglianone, E. and Donelli, G. 2006. Campylobacter jejuni loss of culturability in aqueous microcosms and ability to resuscitate in a mouse model. Int. J. Food Microbiol. 107: 83–91.
26. Vandamme, P. 2000. Taxonomy of the family Campylobacteraceae. pp. 3–26. In: Campylobacter, 2nd ed. (Irving, N. and Martin, J. B. eds.), ASM Press, Washington.
9. Gibbons, R. V. 2002. Cryptogenic rabies, bats, and the question of aerosol transmission. Ann. Emerg. Med. 39: 528–536.
17. Liu, G. E. 2009. Applications and case studies of the next-generation sequencing technologies in food, nutrition and agriculture. Recent Pat. Food Nutr. Agric. 1: 75–79.
25. Schipper, J., Chanson, J. S., Chiozza, F., Cox, N. A., Hoffmann, M., Katariya, V., Lamoreux, J., Rodrigues, A. S., Stuart, S. N.,Temple, H. J., Baillie, J., Boitani, L., Lacher, T. E. Jr., Mittermeier, R. A., Smith, A. T., Absolon, D., Aguiar, J. M., Amori, G.,Bakkour, N., Baldi, R., Berridge, R. J., Bielby, J., Black, P. A., Blanc, J. J., Brooks, T. M., Burton, J. A., Butynski, T. M., Catullo,G., Chapman, R., Cokeliss, Z., Collen, B., Conroy, J., Cooke, J. G., da Fonseca, G. A., Derocher, A. E., Dublin, H. T., Duckworth,J. W., Emmons, L., Emslie, R. H., Festa-Bianchet, M., Foster, M., Foster, S., Garshelis, D. L., Gates, C., Gimenez-Dixon, M.,Gonzalez, S., Gonzalez-Maya, J. F., Good, T. C., Hammerson, G., Hammond, P. S., Happold, D., Happold, M., Hare, J., Harris,R. B., Hawkins, C. E., Haywood, M., Heaney, L. R., Hedges, S., Helgen, K. M., Hilton-Taylor, C., Hussain, S. A., Ishii, N., Jefferson, T. A., Jenkins, R. K., Johnston, C. H., Keith, M., Kingdon, J., Knox, D. H., Kovacs, K. M., Langhammer, P., Leus, K., Lewison, R., Lichtenstein, G., Lowry, L. F., Macavoy, Z., Mace, G. M., Mallon, D. P., Masi, M., McKnight, M. W., Medellín, R.A., Medici, P., Mills, G., Moehlman, P. D., Molur, S., Mora, A., Nowell, K., Oates, J. F., Olech, W., Oliver, W. R., Oprea, M., Patterson, B. D., Perrin, W. F., Polidoro, B. A., Pollock, C., Powel, A., Protas, Y., Racey, P., Ragle, J., Ramani, P., Rathbun, G., Reeves, R. R., Reilly, S. B., Reynolds, J. E. 3rd., Rondinini, C., Rosell-Ambal, R. G., Rulli, M., Rylands, A. B., Savini, S., Schank, C. J.,Sechrest, W., Self-Sullivan, C., Shoemaker, A., Sillero-Zubiri, C., De Silva, N., Smith, D. E., Srinivasulu, C., Stephenson, P. J., van Strien, N., Talukdar, B. K., Taylor, B. L., Timmins, R., Tirira, D. G., Tognelli, M. F., Tsytsulina, K., Veiga, L. M., Vié, J. C., Williamson,E. A., Wyatt, S. A., Xie, Y. and Young, B. E. 2008. The status of the world’s land and marine mammals: diversity, threat, and knowledge. Science 322: 225–230.
2. Allos, B. M. 2001. Campylobacter jejuni Infections: update on emerging issues and trends. Clin. Infect. Dis. 32: 1201–1206.
3. Badrane, H., Bahloul, C., Perrin, P. and Tordo, N. 2001. Evidence of two Lyssavirus phylogroups with distinct pathogenicity and immunogenicity. J. Virol. 75: 3268–3276.
11. Herlemann, D. P., Labrenz, M., Jürgens, K., Bertilsson, S., Waniek, J. J. and Andersson, A. F. 2011. Transitions in bacterial communities along the 2000 km salinity gradient of the Baltic Sea. ISME J. 5: 1571–1579.
27. Veikkolainen, V., Vesterinen, E. J., Lilley, T. M. and Pulliainen, A. T. 2014. Bats as reservoir hosts of human bacterial pathogen, Bartonella mayotimonensis. Emerg. Infect. Dis. 20: 960–967.
16. Lane, D. J., Pace, B., Olsen, G. J., Stahl, D. A., Sogin, M. L. and Pace, N. R. 1985. Rapid determination of 16S ribosomal RNA sequences for phylogenetic analyses. Proc. Natl. Acad. Sci. U.S.A. 82: 6955–6959.
19. Moore, J., Caldwell, P. and Millar, B. 2001. Molecular detection of Campylobacter spp. in drinking, recreational and environmental water supplies. Int. J. Hyg. Environ. Health 204: 185–189.
21. Palmer, S. R., Gully, P. R., White, J. M., Pearson, A. D., Suckling, W. G., Jones, D. M., Rawes, J. C. and Penner, J. L. 1983. Water-borne outbreak of campylobacter gastroenteritis. Lancet 1: 287–290.
12. Human Microbiome Project Consortium 2012. Structure, function and diversity of the healthy human microbiome. Nature 486: 207–214.
23. Reyes, A. W., Rovira, H. G., Masangkay, J. S., Ramirez, T. J., Yoshikawa, Y. and Baticados, W. N. 2011. Polymerase chain reaction assay and conventional isolation of Salmonella spp. from Philippine bats. Acta Sci. Vet. 39: 947.
22. Prasad, K. N., Dixit, A. K. and Ayyagari, A. 2001. Campylobacter species associated with diarrhoea in patients from a tertiary care centre of north India. Indian J. Med. Res. 114: 12–17.
18. Murray, K., Rogers, R., Selvey, L., Selleck, P., Hyatt, A., Gould, A., Gleeson, L., Hooper, P. and Westbury, H. 1995. A novel morbillivirus pneumonia of horses and its transmission to humans. Emerg. Infect. Dis. 1: 31–33.
5. Chua, K. B., Koh, C. L., Hooi, P. S., Wee, K. F., Khong, J. H., Chua, B. H., Chan, Y. P., Lim, M. E. and Lam, S. K. 2002. Isolation of Nipah virus from Malaysian Island flying-foxes. Microbes Infect. 4: 145–151.
20. Nesbit, E. G., Gibbs, P., Dreesen, D. W. and Lee, M. D. 2001. Epidemiologic features of Campylobacter jejuni isolated from poultry broiler houses and surrounding environments as determined by use of molecular strain typing. Am. J. Vet. Res. 62: 190–194.
10. Gomez-Alvarez, V., Revetta, R. P. and Santo Domingo, J. W. 2012. Metagenomic analyses of drinking water receiving different disinfection treatments. Appl. Environ. Microbiol. 78: 6095–6102.
14. Klite, P. D. 1965. Intestinal bacterial flora and transit time of three neotropical bat species. J. Bacteriol. 90: 375–379.
7. Fontanot, M., Iacumin, L., Cecchini, F., Comi, G. and Manzano, M. 2014. Rapid detection and differentiation of important Campylobacter spp. in poultry samples by dot blot and PCR. Food Microbiol. 43: 28–34.
15. Labarca, J. A., Sturgeon, J., Borenstein, L., Salem, N., Harvey, S. M., Lehnkering, E., Reporter, R. and Mascola, L. 2002. Campylobacter upsaliensis: Another pathogen for consideration in the United States. Clin. Infect. Dis. 34: E59–E60.
13. Kaakoush, N. O., Castaño-Rodríguez, N., Mitchell, H. M. and Man, S. M. 2015. Global Epidemiology of Campylobacter Infection. Clin. Microbiol. Rev. 28: 687–720.
8. Friedman, C. R., Neimann, J.,
22
23
24
25
26
27
10
11
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13
14
15
16
17
18
19
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2
3
4
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7
8
9
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2413450 - Proc Natl Acad Sci U S A. 1985 Oct;82(20):6955-9
24929879 - Food Microbiol. 2014 Oct;43:28-34
11238853 - J Virol. 2001 Apr;75(7):3268-76
12015708 - Clin Infect Dis. 2002 Jun 1;34(11):E59-60
10827955 - Science. 2000 May 26;288(5470):1432-5
11212026 - Am J Vet Res. 2001 Feb;62(2):190-4
20653528 - Recent Pat Food Nutr Agric. 2009 Jan;1(1):75-9
11762201 - Indian J Med Res. 2001 Jul;114:12-7
11880045 - Microbes Infect. 2002 Feb;4(2):145-51
26062576 - Clin Microbiol Rev. 2015 Jul;28(3):687-720
8903153 - Emerg Infect Dis. 1995 Jan-Mar;1(1):31-3
6130305 - Lancet. 1983 Feb 5;1(8319):287-90
24856523 - Emerg Infect Dis. 2014 Jun;20(6):960-7
11759163 - Int J Hyg Environ Health. 2001 Nov;204(2-3):185-9
18845749 - Science. 2008 Oct 10;322(5899):225-30
21472016 - ISME J. 2011 Oct;5(10):1571-9
11973559 - Ann Emerg Med. 2002 May;39(5):528-36
19901371 - J Wildl Dis. 2009 Oct;45(4):952-61
22699609 - Nature. 2012 Jun 13;486(7402):207-14
14329450 - J Bacteriol. 1965 Aug;90:375-9
11283810 - Clin Infect Dis. 2001 Apr 15;32(8):1201-6
22729545 - Appl Environ Microbiol. 2012 Sep;78(17):6095-102
16290304 - Int J Food Microbiol. 2006 Mar 1;107(1):83-91
16151090 - Appl Environ Microbiol. 2005 Sep;71(9):5085-8
References_xml – reference: 1. Adesiyun, A. A., Stewart-Johnson, A. and Thompson, N. N. 2009. Isolation of enteric pathogens from bats in Trinidad. J. Wildl. Dis. 45: 952–961.
– reference: 14. Klite, P. D. 1965. Intestinal bacterial flora and transit time of three neotropical bat species. J. Bacteriol. 90: 375–379.
– reference: 17. Liu, G. E. 2009. Applications and case studies of the next-generation sequencing technologies in food, nutrition and agriculture. Recent Pat. Food Nutr. Agric. 1: 75–79.
– reference: 27. Veikkolainen, V., Vesterinen, E. J., Lilley, T. M. and Pulliainen, A. T. 2014. Bats as reservoir hosts of human bacterial pathogen, Bartonella mayotimonensis. Emerg. Infect. Dis. 20: 960–967.
– reference: 10. Gomez-Alvarez, V., Revetta, R. P. and Santo Domingo, J. W. 2012. Metagenomic analyses of drinking water receiving different disinfection treatments. Appl. Environ. Microbiol. 78: 6095–6102.
– reference: 20. Nesbit, E. G., Gibbs, P., Dreesen, D. W. and Lee, M. D. 2001. Epidemiologic features of Campylobacter jejuni isolated from poultry broiler houses and surrounding environments as determined by use of molecular strain typing. Am. J. Vet. Res. 62: 190–194.
– reference: 8. Friedman, C. R., Neimann, J., Wegener, H. C. and Tauxe, R. V. 2000. Epidemiology of Campylobacter jejuni infections in the United States and other industrialized nations. pp. 121–138. In: Campylobacter, 2nd ed., (Nachamkin, I. and Blaser, M.J. eds.), ASM International, Washington.
– reference: 6. Chua, K. B., Bellini, W. J., Rota, P. A., Harcourt, B. H., Tamin, A., Lam, S. K., Ksiazek, T. G., Rollin, P. E., Zaki, S. R., Shieh, W., Goldsmith, C. S., Gubler, D. J., Roehrig, J. T., Eaton, B., Gould, A. R., Olson, J., Field, H., Daniels, P., Ling, A. E., Peters, C. J., Anderson, L. J. and Mahy, B. W. 2000. Nipah virus: a recently emergent deadly paramyxovirus. Science 288: 1432–1435.
– reference: 12. Human Microbiome Project Consortium 2012. Structure, function and diversity of the healthy human microbiome. Nature 486: 207–214.
– reference: 3. Badrane, H., Bahloul, C., Perrin, P. and Tordo, N. 2001. Evidence of two Lyssavirus phylogroups with distinct pathogenicity and immunogenicity. J. Virol. 75: 3268–3276.
– reference: 2. Allos, B. M. 2001. Campylobacter jejuni Infections: update on emerging issues and trends. Clin. Infect. Dis. 32: 1201–1206.
– reference: 13. Kaakoush, N. O., Castaño-Rodríguez, N., Mitchell, H. M. and Man, S. M. 2015. Global Epidemiology of Campylobacter Infection. Clin. Microbiol. Rev. 28: 687–720.
– reference: 7. Fontanot, M., Iacumin, L., Cecchini, F., Comi, G. and Manzano, M. 2014. Rapid detection and differentiation of important Campylobacter spp. in poultry samples by dot blot and PCR. Food Microbiol. 43: 28–34.
– reference: 15. Labarca, J. A., Sturgeon, J., Borenstein, L., Salem, N., Harvey, S. M., Lehnkering, E., Reporter, R. and Mascola, L. 2002. Campylobacter upsaliensis: Another pathogen for consideration in the United States. Clin. Infect. Dis. 34: E59–E60.
– reference: 11. Herlemann, D. P., Labrenz, M., Jürgens, K., Bertilsson, S., Waniek, J. J. and Andersson, A. F. 2011. Transitions in bacterial communities along the 2000 km salinity gradient of the Baltic Sea. ISME J. 5: 1571–1579.
– reference: 18. Murray, K., Rogers, R., Selvey, L., Selleck, P., Hyatt, A., Gould, A., Gleeson, L., Hooper, P. and Westbury, H. 1995. A novel morbillivirus pneumonia of horses and its transmission to humans. Emerg. Infect. Dis. 1: 31–33.
– reference: 25. Schipper, J., Chanson, J. S., Chiozza, F., Cox, N. A., Hoffmann, M., Katariya, V., Lamoreux, J., Rodrigues, A. S., Stuart, S. N.,Temple, H. J., Baillie, J., Boitani, L., Lacher, T. E. Jr., Mittermeier, R. A., Smith, A. T., Absolon, D., Aguiar, J. M., Amori, G.,Bakkour, N., Baldi, R., Berridge, R. J., Bielby, J., Black, P. A., Blanc, J. J., Brooks, T. M., Burton, J. A., Butynski, T. M., Catullo,G., Chapman, R., Cokeliss, Z., Collen, B., Conroy, J., Cooke, J. G., da Fonseca, G. A., Derocher, A. E., Dublin, H. T., Duckworth,J. W., Emmons, L., Emslie, R. H., Festa-Bianchet, M., Foster, M., Foster, S., Garshelis, D. L., Gates, C., Gimenez-Dixon, M.,Gonzalez, S., Gonzalez-Maya, J. F., Good, T. C., Hammerson, G., Hammond, P. S., Happold, D., Happold, M., Hare, J., Harris,R. B., Hawkins, C. E., Haywood, M., Heaney, L. R., Hedges, S., Helgen, K. M., Hilton-Taylor, C., Hussain, S. A., Ishii, N., Jefferson, T. A., Jenkins, R. K., Johnston, C. H., Keith, M., Kingdon, J., Knox, D. H., Kovacs, K. M., Langhammer, P., Leus, K., Lewison, R., Lichtenstein, G., Lowry, L. F., Macavoy, Z., Mace, G. M., Mallon, D. P., Masi, M., McKnight, M. W., Medellín, R.A., Medici, P., Mills, G., Moehlman, P. D., Molur, S., Mora, A., Nowell, K., Oates, J. F., Olech, W., Oliver, W. R., Oprea, M., Patterson, B. D., Perrin, W. F., Polidoro, B. A., Pollock, C., Powel, A., Protas, Y., Racey, P., Ragle, J., Ramani, P., Rathbun, G., Reeves, R. R., Reilly, S. B., Reynolds, J. E. 3rd., Rondinini, C., Rosell-Ambal, R. G., Rulli, M., Rylands, A. B., Savini, S., Schank, C. J.,Sechrest, W., Self-Sullivan, C., Shoemaker, A., Sillero-Zubiri, C., De Silva, N., Smith, D. E., Srinivasulu, C., Stephenson, P. J., van Strien, N., Talukdar, B. K., Taylor, B. L., Timmins, R., Tirira, D. G., Tognelli, M. F., Tsytsulina, K., Veiga, L. M., Vié, J. C., Williamson,E. A., Wyatt, S. A., Xie, Y. and Young, B. E. 2008. The status of the world’s land and marine mammals: diversity, threat, and knowledge. Science 322: 225–230.
– reference: 4. Baffone, W., Casaroli, A., Citterio, B., Pierfelici, L., Campana, R., Vittoria, E., Guaglianone, E. and Donelli, G. 2006. Campylobacter jejuni loss of culturability in aqueous microcosms and ability to resuscitate in a mouse model. Int. J. Food Microbiol. 107: 83–91.
– reference: 26. Vandamme, P. 2000. Taxonomy of the family Campylobacteraceae. pp. 3–26. In: Campylobacter, 2nd ed. (Irving, N. and Martin, J. B. eds.), ASM Press, Washington.
– reference: 16. Lane, D. J., Pace, B., Olsen, G. J., Stahl, D. A., Sogin, M. L. and Pace, N. R. 1985. Rapid determination of 16S ribosomal RNA sequences for phylogenetic analyses. Proc. Natl. Acad. Sci. U.S.A. 82: 6955–6959.
– reference: 19. Moore, J., Caldwell, P. and Millar, B. 2001. Molecular detection of Campylobacter spp. in drinking, recreational and environmental water supplies. Int. J. Hyg. Environ. Health 204: 185–189.
– reference: 5. Chua, K. B., Koh, C. L., Hooi, P. S., Wee, K. F., Khong, J. H., Chua, B. H., Chan, Y. P., Lim, M. E. and Lam, S. K. 2002. Isolation of Nipah virus from Malaysian Island flying-foxes. Microbes Infect. 4: 145–151.
– reference: 24. Schallenberg, M., Bremer, P. J., Henkel, S., Launhardt, A. and Burns, C. W. 2005. Survival of Campylobacter jejuni in water: effect of grazing by the freshwater crustacean Daphnia carinata (Cladocera). Appl. Environ. Microbiol. 71: 5085–5088.
– reference: 21. Palmer, S. R., Gully, P. R., White, J. M., Pearson, A. D., Suckling, W. G., Jones, D. M., Rawes, J. C. and Penner, J. L. 1983. Water-borne outbreak of campylobacter gastroenteritis. Lancet 1: 287–290.
– reference: 23. Reyes, A. W., Rovira, H. G., Masangkay, J. S., Ramirez, T. J., Yoshikawa, Y. and Baticados, W. N. 2011. Polymerase chain reaction assay and conventional isolation of Salmonella spp. from Philippine bats. Acta Sci. Vet. 39: 947.
– reference: 9. Gibbons, R. V. 2002. Cryptogenic rabies, bats, and the question of aerosol transmission. Ann. Emerg. Med. 39: 528–536.
– reference: 22. Prasad, K. N., Dixit, A. K. and Ayyagari, A. 2001. Campylobacter species associated with diarrhoea in patients from a tertiary care centre of north India. Indian J. Med. Res. 114: 12–17.
– ident: 6
  doi: 10.1126/science.288.5470.1432
– ident: 19
  doi: 10.1078/1438-4639-00096
– ident: 2
  doi: 10.1086/319760
– ident: 13
  doi: 10.1128/CMR.00006-15
– ident: 17
  doi: 10.2174/2212798410901010075
– ident: 7
  doi: 10.1016/j.fm.2014.05.001
– ident: 9
  doi: 10.1067/mem.2002.121521
– ident: 11
  doi: 10.1038/ismej.2011.41
– ident: 20
  doi: 10.2460/ajvr.2001.62.190
– ident: 10
  doi: 10.1128/AEM.01018-12
– ident: 14
  doi: 10.1128/JB.90.2.375-379.1965
– ident: 3
  doi: 10.1128/JVI.75.7.3268-3276.2001
– ident: 18
  doi: 10.3201/eid0101.950107
– ident: 26
– ident: 1
  doi: 10.7589/0090-3558-45.4.952
– ident: 22
– ident: 5
  doi: 10.1016/S1286-4579(01)01522-2
– ident: 15
  doi: 10.1086/340266
– ident: 12
  doi: 10.1038/nature11234
– ident: 27
  doi: 10.3201/eid2006.130956
– ident: 4
  doi: 10.1016/j.ijfoodmicro.2005.08.015
– ident: 25
  doi: 10.1126/science.1165115
– ident: 16
  doi: 10.1073/pnas.82.20.6955
– ident: 21
  doi: 10.1016/S0140-6736(83)91698-7
– ident: 24
  doi: 10.1128/AEM.71.9.5085-5088.2005
– ident: 8
– ident: 23
– reference: 24929879 - Food Microbiol. 2014 Oct;43:28-34
– reference: 12015708 - Clin Infect Dis. 2002 Jun 1;34(11):E59-60
– reference: 22699609 - Nature. 2012 Jun 13;486(7402):207-14
– reference: 11973559 - Ann Emerg Med. 2002 May;39(5):528-36
– reference: 16151090 - Appl Environ Microbiol. 2005 Sep;71(9):5085-8
– reference: 6130305 - Lancet. 1983 Feb 5;1(8319):287-90
– reference: 16290304 - Int J Food Microbiol. 2006 Mar 1;107(1):83-91
– reference: 10827955 - Science. 2000 May 26;288(5470):1432-5
– reference: 21472016 - ISME J. 2011 Oct;5(10):1571-9
– reference: 11762201 - Indian J Med Res. 2001 Jul;114:12-7
– reference: 2413450 - Proc Natl Acad Sci U S A. 1985 Oct;82(20):6955-9
– reference: 18845749 - Science. 2008 Oct 10;322(5899):225-30
– reference: 14329450 - J Bacteriol. 1965 Aug;90:375-9
– reference: 24856523 - Emerg Infect Dis. 2014 Jun;20(6):960-7
– reference: 11759163 - Int J Hyg Environ Health. 2001 Nov;204(2-3):185-9
– reference: 26062576 - Clin Microbiol Rev. 2015 Jul;28(3):687-720
– reference: 11880045 - Microbes Infect. 2002 Feb;4(2):145-51
– reference: 20653528 - Recent Pat Food Nutr Agric. 2009 Jan;1(1):75-9
– reference: 11212026 - Am J Vet Res. 2001 Feb;62(2):190-4
– reference: 19901371 - J Wildl Dis. 2009 Oct;45(4):952-61
– reference: 11238853 - J Virol. 2001 Apr;75(7):3268-76
– reference: 11283810 - Clin Infect Dis. 2001 Apr 15;32(8):1201-6
– reference: 22729545 - Appl Environ Microbiol. 2012 Sep;78(17):6095-102
– reference: 8903153 - Emerg Infect Dis. 1995 Jan-Mar;1(1):31-3
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Snippet Bats are the second diversity species of mammals and widely distributed in the world. They are thought to be reservoir and vectors of zoonotic pathogens....
Bats are the second diversity species of mammals and widely distributed in the world. They are thought to be reservoir and vectors of zoonotic pathogens....
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StartPage 1347
SubjectTerms 16S rRNA
Animals
Bacteria
Bacteriology
bat
Camplyobacter
Campylobacter
Campylobacter Infections - diagnosis
Campylobacter Infections - epidemiology
Campylobacter Infections - microbiology
Campylobacter Infections - veterinary
Campylobacter jejuni
Campylobacter jejuni - genetics
Campylobacteriosis
Chiroptera
Chiroptera - microbiology
Diarrhea
Disease Reservoirs - microbiology
Genomes
High-Throughput Nucleotide Sequencing - veterinary
Livestock
metagenome
Microbiomes
Microbiota
Next-generation sequencing
Pathogens
Philippines - epidemiology
Polymerase Chain Reaction - veterinary
Prevalence
Rectum
Rectum - microbiology
Rousettus amplexicaudatus
rRNA 16S
Spacer
Zoonoses
Title Detection of Campylobacter jejuni in rectal swab samples from Rousettus amplexicaudatus in the Philippines
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https://pubmed.ncbi.nlm.nih.gov/PMC5053940
Volume 78
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