Alexey M Gulyukin, Tatiana N Rozhdestvenskaya, Anna V Ruzina, Marat G Teymurazov, Ekaterina V Sapegina
Animal Husbandry and Fodder Production. 2023. Vol. 106, no 4. Р. 248-259.
doi:10.33284/2658-3135-106-4-248
Review article
Diagnostics, prevention and measures to struggle avian ornithobacteriosis (mini-review)
Alexey M Gulyukin1, Tatiana N Rozhdestvenskaya2, Anna V Ruzina3, Marat G Teymurazov4, Ekaterina V Sapegina5
1,2,3,4 Federal Research Center–All-Russian Research Institute of Experimental Veterinary Medicine named after K.I. Scriabin and Y.R. Kovalenko of the Russian Academy of Sciences, Moscow, Russia
5Scientific and Production Enterprise "AVIVAK", St. Petersburg, Russia
1admin@viev.ru, https//orcid.org/0000-0003-2160-4770
2admin@viev.ru, https//orcid.org/0000-0003-1272-8202
3ruina.a@yandex.ru, https//orcid.org0000-0001-8161-1716
4admin@viev.ru, https//orcid.org/0000-0002-8635-8366
5sapkar@rambler.ru, https//orcid.org/0009-0007-1603-3666
Abstract. Poultry farming is a dynamically developing branch of the agro-industrial complex, which occupies a leading position among other livestock areas. The advanced technologies currently used in industrial poultry farming make it possible to fully provide the population with affordable, socially significant, highly nutritious and dietary products. Ornithobacteriosis is an infectious, highly contagious disease affecting the respiratory organs of young birds, causing aerosacculitis, rhinotracheitis, pneumonia, pleurisy, etc. The disease is accompanied by a decrease in productivity at the peak of egg production in adult birds. Prophylactic measures aimed at preventing ornithobacteriosis in industrial poultry farming should be based primarily on compliance with general veterinary and zoohygienic standards and on strict implementation of established antiepizootic measures. The correct choice of the vaccine, the selection of the optimal method and time of its application, taking into account the epizootological situation in the farm, can be an effective tool in the control and prevention of avian ornithobacteriosis.
Keywords: poultry farming, оrnithobacteriosis, Ornitobacterium rinotracheale, ELISA
Acknowledgments: the work was performed in accordance to the plan of research works FSBSI FRC ARIEVM RAS (FGUG-2022-0009).
For citation: Gulyukin АМ, Rozhdestvenskaya TN, Ruzina AV, Teymurazov MG, Sapegina EV. Diagnostics, prevention and measures to struggle avian ornithobacteriosis (mini-review). Animal Husbandry and Fodder Production. 2023;106(4):248-259. (In Russ.). https://doi.org/10.33284/2658-3135-106-4-248
References
- Bakulin VA. Bird diseases. St. Petersburg: Izdatel' V.A. Bakulin; 2006:688 p.
- Nechitailo KS, Ryazantseva KV, Sizova EA, Korolyov VL. Biological active additives for poultry farming based on humic complexes (review). Animal Husbandry and Fodder Production. 2021;104(1): 94-108. doi: 10.33284/2658-3135-104-1-94
- Chernyshov AV, et al. Biological properties of Ornithobacterium Rhinotracheale strains. Proceedings of the Federal Centre for Animal Health. 2010;8:196-204.
- Krokhin NL et al. Vaccination is one of the key links in the prevention of hemophilosisin birds . Veterinary and Feeding. 2018;7:33-34.
- Azhmuldinov EA, Kizaev MA, Titov MG, Babicheva IA. Influence of various stress factors on the organism of farm animals (review). Animal Husbandry and Fodder Production. 2018;101(2):79-89.
- Gorelik LSh, Gorelik OV, Kharlap SYu. The state of the pituitary-thyroid system of chickens during the laying period. Animal Husbandry and Fodder Production. 2018;101(2):104-111.
- Gulyukin MI. Development of efficient methods of diagnostics and specific prevention of infections diseases of agricultural animals, fish and honey bees. Proceedings of the All-Russian Research Institute of Experimental Veterinary Science named after Ya.R. Kovalenko. 2015;78:10-37.
- Gulyukin MI, Stepanova TV. The role of blood cells in the formation and development of the immune response. Veterinary and Feeding. 2017;3:36-40.
- Gulyukin M. Prevention of infectious diseases - ensuring food and nutritional security of Russia. Proceedings of the All-Russian Research Institute of Experimental Veterinary Science named after Ya.R. Kovalenko. 2009;75:28-51.
- Novikova AF et al. Study of avian ornithobacteriosis in experimental conditions. Efficient livestock 2019;4(152):70-71.
- Gulyukin MI et al. Scientifically based system of anti-epizootic measures and modern methods of diagnostics, specific prevention and treatment of infectious diseases of domestic animals. Novosibirsk: ASE "SibAK"; 2019:310 p.
- Pankratov SV, Abgaryan SR. Modern approaches in the diagnosis of avian pasteurellosis. Legal Regulation in Veterinary Medicine. 2022;4:68-71.
- Rozhdestvenskaya TN, Pankratov SV, Ruzina AV, Novikova OB. Respiratory syndrome is an open gatewaz for infection. Poultry and Chicken Products. 2020;6:40-42.
- Rozhdestvenskaya TN, Pankratov SV, Ruzina AV, Novikova OB. Avian Respiratory Syndrome. (Conference proceedings) Modern scientific developments and advanced technologies for industrial poultry farming: collection of articles of scientific and practical conference, (St. Petersburg, July 12-14 2023). St. Petersburg: Mediapapir Ltd.; 2023а:124-128.
- Pankratov SV, Rozhdestvenskaya TN, Sukhinin AA, Ruzina AV. Poultry respiratory syndrome. Etiology. Diagnostics. Measures of control and prevention. Poultry and Chicken Products. 2021;4:34-36.
- Ruzina AV, Pankratov SV. Improvement of tools for specific prevention of avian salmonellosis. Veterinary and Feeding. 2022;6:72-74.
- Rozhdestvenskaya TN, Ruzina AV, Pankratov SV, Yakovlev SS. System of ensuring epizootic welfare of poultry farms in relation to bacterial diseases of birds. (Conference proceedings) Modern scientific developments and advanced technologies for industrial poultry farming: collection of articles of scientific and practical conference, (St. Petersburg, July 12-14 2023). St. Petersburg: Mediapapir Ltd., 2023b:76-89.
- Smirnova LI, Sukhinin AА, Prikhodko EI. Practical microbiology for bioecology faculty: textbook. St. Petersburg: St. Petersburg State University of Veterinary Medicine; 2020: 208 p.
- Rozhdestvenskaya TN et al. Modern approaches to the production of inactivated vaccines against chicken cholera. Agrarian Science. 2022;7-8:68-73. doi: 10.32634/0869-8155-2022-361-7-8-68-73
- Ryazanov VA, Kurilkina MYa, Duskaev GK, Gabidulin VM. Phytobiotics as an alternative to antibiotics in animal husbandry (review). Animal Husbandry and Fodder Production. 2021;104(4):108-123. doi: 10.33284/2658-3135-104-4-108
- Kholodilina TN, Shavrina IV, Solovyov MV. Alimentary prevention of immunosuppression in poultry farming (review). Animal Husbandry and Fodder Production. 2023;106(3):148-169. doi:10.33284/2658-3135-106-3-148
- Shurahova JuN. Biological features of Ornithobacterium rhinotracheale population and prospects for its detection in poultry production facilities. Russian Journal of Veterinary Pathology. 2008;1(24):95-99.
- Abdelwhab EM, Lüschow D, Hafez HM. Development of real-time polymerase chain reaction assay for detection of Ornithobacterium rhinotracheale in poultry. Avian Dis. 2013;57(3):663-666. doi: 10.1637/10517-022213-ResNoteR
- Barbosa EV, Cardoso CV, Silva R, Cerqueira A, Liberal M, Castro HC. Ornithobacterium rhinotracheale: an update review about an emerging poultry pathogen. Vet Sci. 2020;7(1): doi: 10.3390/vetsci7010003
- Campler MR, Hashish A, Ghanem M, El-Gazzar MM, Arruda AG. Space-time patterns of poultry pathogens in the USA: a case study of Ornithobacterium rhinotracheale and Pasteurella multocida in Turkey populations. Pathogens. 2023;12(8):1004. doi: 10.3390/pathogens12081004
- Chin RP, van Empel PCM, Hafez HM. Ornithobacterium rhinotracheale infection. In: Swayne DE, editor. Diseases of Poultry. 13th ed. USA, NJ, Hoboken, Wiley-Blackwell: John Wiley & Sons; 2013:807-858.
- El-Ghany WAA. An updated comprehensive review on ornithobacteriosis: A worldwide emerging avian respiratory disease. Open Vet J. 2021;11(4):555-568. doi: 10.5455/OVJ.2021.v11.i4.5
- Gornatti-Churria CD, Loukopoulos P, Prescott M, Petruccelli MA, Machuca MA. A combined retrospective, prospective and experimental study of Ornithobacterium rhinotracheale infection in chickens. Avian Pathol. 2019;48(5):460-469. doi: 10.1080/03079457.2019.1620915
- Hashish A, Sinha A, Sato Y, Macedo NR, El-Gazzar M. Correction: Hashish et al. Development and Validation of a New TaqMan Real-Time PCR for the Detection of Ornithobacterium rhinotracheale. Microorganisms 2022, 10, 341. Microorganisms. 2022;10(5):917. doi: 10.3390/microorganisms10050917
- Nguyen VG, Cao TB, Le VT, Truong HT, Chu TT, Dang HA, Nguyen TH, Le TL, Huynh TM. A multiplex PCR method for simultaneous detection of infectious laryngotracheitis virus and Ornithobacterium rhinotracheale. Vet Sci. 2023;10(4):272. doi: 10.3390/vetsci10040272
- Peña-Vargas ER, Vega-Sánchez V, Morales-Erasto V, Trujillo-Ruís HH, Talavera-Rojas M, Soriano-Vargas E. Serotyping, genotyping, and antimicrobial susceptibility of Ornithobacteriumrhinotracheale isolates from Mexico. Avian Dis. 2016;60(3):669-672. doi: 10.1637/11333-112515-ResNote.1
- Van Empel PV, Hafer HM. Ornithobacterium rhinotracheale: a review. Avian Pathology. 1999;28(3):217-227. doi: 10.1080/03079459994704
- Vandamme P, Segers P, Vancanneyt M, van Hove K, Mutters R, Hommez J, Dewhirst F, Paster B, Kersters K, Falsen E et al. Ornithobacterium rhinotracheale nov., sp. nov., isolated from the avian respiratory tract. Int J Syst Bacteriol. 1994; 44:24-37.
- Xue J, Lv C, He P, Xu M, Zhang G. Research Note: Serological investigation of Ornithobacterium rhinotracheale infection in China. Poult Sci. 2020;99(10):4814-4817. doi: 10.1016/j.psj.2020.06.045
- Zahra M, Ferreri M, Alkasir R, Yin J, Han B, Su J. Isolation and characterization of small-colony variants of Ornithobacterium rhinotracheale. J. Clin. Microbiol. 2013;51(10):3228-3236. doi: 10.1128/JCM.01337-13
- Zuo ZH, Zhang TY, Guo YX, Chu J, Qu GG, Miao LZ, Shen ZQ, He C. Serosurvey of avian metapneumovirus, Orithobacterium rhinotracheale, and chlamydia psittaci and their potential association with avian airsacculitis. Biomed Environ 2018;31(5):403-406. doi: 10.3967/bes2018.053
Information about the authors:
Alexey M Gulyukin, Dr. Sci (Veterinary), Leading Researcher, Laboratory of Epizootology, Federal Research Center – All-Russian Research Institute of Experimental Veterinary Medicine named after K.I. Scriabin and Y.R. Kovalenko of the Russian Academy of Sciences, 24, Ryazanskiy prospect, bild. 1, Moscow, 109428.
Tatiana N Rozhdestvenskaya, Dr. Sci (Veterinary), Head Laboratory of Bird Diseases, Federal Research Center – All-Russian Research Institute of Experimental Veterinary Medicine named after K.I. Scriabin and Y.R. Kovalenko of the Russian Academy of Sciences, 24, Ryazanskiy prospect, bild. 1, Moscow, 109428.
Anna V Ruzina, Researcher, Laboratory of Bird Diseases, Federal Research Center – All-Russian Research Institute of Experimental Veterinary Medicine named after K.I. Scriabin and Y.R. Kovalenko of the Russian Academy of Sciences, 24, Ryazanskiy prospect, bild. 1, Moscow, 109428.
Marat G Teymurazov, Cand. Sci. (Biology), Senior Researcher, Laboratory of Bird Diseases, Federal Research Center – All-Russian Research Institute of Experimental Veterinary Medicine named after K.I. Scriabin and Y.R. Kovalenko of the Russian Academy of Sciences, 24, Ryazanskiy prospect, bild. 1, Moscow, 109428.
Ekaterina V Sapegina, Deputy Director of the Diagnostic center,"Scientific and Production Enterprise "AVIVAK", Lomonosov microdistrict, Gorbunkovskoye settlement, v. Gorbunki, industrial zone. Orlinskaya zone, building. 21, housing. A., 188502, Leningrad region
The article was submitted 02.11.2023; approved after reviewing 27.11.2023; accepted for publication 11.12.2023.