Azhmuldinov EA, Titov MG, Kizaev MA, Babicheva IA, Soboleva NV, Malchikov RV, Kholodilina TN
DOI: 10.33284/2658-3135-102-4-163
UDC 639.92:577.17
Acknowledgements:
Research was carried out according the plan of research scientific works on 2019-2021 yy. FSBSI FRC BST RAS (No 0761-2019-0006)
The effect of heat stress on the intestinal microbiota
Elemes A Azhmuldinov1, Maxim G Titov1, Mikhail A Kizaev1, Irina A Babicheva2,
Natalya V Soboleva2, Roman V Malchikov3 Tatyana N Kholodilina1,4
1Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences (Orenburg, Russia)
2 Orenburg State Agrarian University (Orenburg, Russia)
3 Perm Institute of Federal Penal Service of Russia (Perm, Russia)
4 Orenburg State University (Orenburg, Russia)
References
- Azhmuldinov E, Chernyshenko Yu, TitovM. Physiological state and productivity of animals under thermal stress. Vestnik Bashkir State Agrarian University. 2019;3(51):26-31. doi: 10.31563/1684-7628-2019-51-3-26-31
- Kizaev MA, Titov MG, Kazakova TV, Marshinskaya OV, Notova SV. The effect of short-term heat load on the biochemical parameters of animal blood. (Conference proceedigs) Beef cattle breeding - priorities and development prospects: international materials. scientific-practical conf. (Orenburg, April 25-26, 2018). under general. ed. RAS Corr. member Miroshnikov SA. Orenburg: Publishing House of the Federal Scientific Center of BST RAS; 2018: 186-189.
- Muradova EO, Tkachenko KV. Microbiology. Moscow: Eksmo; 2007. 336 p.
- Muruyeva GB. Batomunkueva RD, Tsydypov BB. Identification of microbes of the enterobacteriacea family: Collection of scientific works. Buryat. Agr. Inst. Babushkin; 1994;37:52-54.
- Nepoklonov EA Isolation and identification of bacteria of gastrointestinal tract of animals. method. recommendations. No. 13-5-02/1043. Moscow. 2004. 37 p.
- Netrusov AI, Kotov IB. Microbiology: manual for students of higher educat. institutions. ed. 3rd, fix Moscow: Publishing. Center "Academy"; 2009: 352 p.
- Azhmuldinov EA, Titov MG, Kizaev MA, Babicheva IA, Soboleva NV. The role of silver nanoparticles in technological stresses of bulls. Animal Husbandry and Fodder Production. 2019;102(3):8-18. doi: 10.33284/2658-3135-102-3-8
8.Sidorov MA, Skorodumov DI, Fedotov VB. Determinant of zoopathogenic microorganisms: a guide. Moscow: Kolos; 1995. 319 p.
- Dvornikov VM. The stabilizer of an aqueous solution and water-containing raw materials with spontaneously changing redox properties: Pat. 2234945 Russian Federation.Application 15.10.02; publ. 27.08.04, Bull. Number 24.
- Abbott SL, Cheung WK, Janda JM. The genus Aeromonas: biochemical characteristics, atypical reactions, and phenotypic identification schemes. Journal of Clinical Microbiology. 2003;41(6):2348-2357. doi: 10.1128/JCM.41.6.2348-2357.2003
- Berkeley RCW, Bock E, Boone DR, et al. Bergey’s manual of determinative bacteriology. Holt GH, Krieg NR, Sheath PHA, editors, et al. Baltimore: Williams Wilkins; 1994: 787 p.
- Brandtzaeg P. The gut as communicator between environment and host: immunological consequences. European Journal Pharmacology. 2011;668(Suppl 1):S16-S32. doi: https://doi.org/10.1016/j.ejphar.2011.07.006
- Buller NB. Bacteria from fish and other aquatic animals: a practical identification manual. Oxfordshire: CABI Publ., 2004; 361 p.
- Combes S, Michelland RJ, Monteils V, Cauquil L, Soulie V, Tran NU, Gidenne T, Fortun-Lamothe L. Postnatal development of the rabbit caecal microbiota composition and activity. FEMS Microbiol. Ecol. 2011;77(3):680-689. doi: 10.1111/j.1574-6941.2011.01148.x
- Connor EE, Mwamuka J, Gole A, Murphy CJ, Wyatt MD. Gold nanoparticles are taken up by human cells but do not cause acute cytotoxicity. Small. 2005;1(3):325-327. doi: https://doi.org/10.1002/smll.200400093
- Davies RR, Davies JA. Rabbit gastrointestinal physiology. Veterinary Clinics of North America: Exotic Animal Practice. 2003;6(1):139-153. doi: 10.1016/S1094-9194(02)00024-5
- Dokladny K, Moseley PL, Ma TY. Physiologically relevant increase in temperature causes an increase in intestinal epithelial tight junction permeability. Am J Physiol Gastrointest Liver Physiol. 2006;290(2):G204-G212. doi: 10.1152/ajpgi.00401.2005
- Gaffin SL, Hubbard R. Experimental approaches to therapy and prophylaxis for heat stress and heatstroke. Wild Environ Med. 1996;7(4):312-334. doi: 10.1580/1080-6032(1996)007[0312:eattap]2.3.co;2
- Garriga C, Hunter RR, Amat C, Planas JM, Mitchell MA, et al. Heat stress increases apical glucose transport in the chicken jejunum. Am J Physiol Regul Integr Comp Physiol. 2006;290(1):R195-R201. doi:https://doi.org/10.1152/ajpregu.00393.2005
- Katschinski DM, Le L, Heinrich D, Wagner KF, Hofer T, et al. Heat induction of the unphosphorylated form of hypoxia-inducible factor-1α is dependent on heat shock protein-90 activity. J Biol Chem. 2002;277:9262-9267. doi: 10.1074/jbc.M110377200
- Kim YS, Kim JC, Cho HS, Rha DS, Kim JM, Park JD, et al. Twenty-eight-day oral toxicity, genotoxicity, and gender-related tissue distribution of silver nanoparticles in Sprague-Dawley rats. Inhal Toxicol. 2008;20(6):575-583. doi: https://doi.org/10.1080/08958370701874663
- Lambert GP. Stress-induced gastrointestinal barrier dysfunction and its inflammatory effects. J Anim Sci. 2009;87(14):E101-108. doi: https://doi.org/10.2527/jas.2008-1339
- Leon LR. Heat stroke and cytokines. Prog Brain Res. 2007;162:481-524. https://doi.org/10.1016/S0079-6123(06)62024-4
- Marai IFM, Habeeb A., Gad AE. Rabbits’ productive, reproductive and physiological performance traits as affected by heat stress: a review. Livest Prod Sci. 2002;78(2):71-90. doi: https://doi.org/10.1016/S0301-6226(02)00091-X
- Michelland RJ, Combes S, Monteils V, Cauquil L, Gidenne T, Fortun-Lamothe L. Molecular analysis of the bacterial community in digestive tract of rabbit. Anaerobe. 2010;16(2):61-65. doi: 10.1016/j.anaerobe.2009.05.002
- Moeser AJ, Ryan KA, Nighot PK, Blikslager AT. Gastrointestinal dysfunсtion induced by early weaning is attenuated by delayed weaning and mast cell blockade in pigs. Am J Physiol Gastrointest Liver Physiol. 2007;293(2):G413-G421. doi: https://doi.org/10.1152/ajpgi.00304.2006
- Sawosz E, Binek M, Grodzik M, Zieliska M, Sysa P, Szmidt M, Niemiec T. Chwalibog A. Influence of hydrocolloidal silver nanoparticles on gastrointestinal microflora and morphology of enterocytes of quails. Arch Anim Nutr. 2007;61(6):444-451. doi: https://doi.org/10.1080/17450390701664314
- Smith F, Clark JE, Overman BL, Tozel CC, Huang JH, et al. Early weaning stress impairs development of mucosal barrier function in the porcine intestine. Am J Physiol Gastrointest Liver Physiol. 2010;298(3):G352-G363. doi: https://doi.org/10.1152/ajpgi.00081.2009
- Turner JR. Intestinal mucosal barrier function in health and disease. Nature reviews Immunology. 2009;9(11):799-809. doi: 10.1038/nri2653
- Weyant RS, Moss CW, Weaver RE, et al. Identification of unusual pathogenic gram-negative aerobic and facultatively anaerobic bacteria. Baltimore: Williams and Wilkins; 1996: 791 p.
- Yan YE, Zhao YQ, Wang H, Fan M. Pathophysiological factors underlyingheatstroke. Med Hypotheses. 2006;67(3):609-617. doi: https://doi.org/10.1016/j.mehy.2005.12.048
- Yang PC, He SH, Zheng PY. Investigation into the signal transduction pathway via which heat stress impairs intestinal epithelial barrier function. J Gatroenterol Heptaol. 2007;22(11):1823-1831. doi: https://doi.org/10.1111/j.1440-1746.2006.04710.x
- Zeng B, Han S, Wang P, Wen B, Jian W, Guo W, et al. The bacterial communities associated with fecal types and body weight of rex rabbits. SciRep. 2015;5:9342. doi: 10.1038/srep09342
Azhmuldinov Elemes Azhmuldinovich, Dr. Sci (Agr.), Professor, ChiefResearcher, Department of Technology of Beef Cattle Breeding and Beef Production, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 460000, Orenburg, Russia, 29, 9 Yanvarya St., tel.: 8(3532)30-81-78
Titov Maxim Gennadevich, Cand. Sci (Agr.), Senior Researcher, Department of Technology of Beef Cattle Breeding and Beef Production, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 460000, Orenburg, Russia, 29, 9 Yanvarya St., tel.: 8(3532)30-81-78, e-mail: titow.ru@mail.ru
Kizaev Mikhail Anatolevich, Cand. Sci (Agr.), ScientificSecretary Department of Technology of Beef Cattle Breeding and Beef Production, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 460000, Orenburg, Russia, 29, 9 Yanvarya St., tel.: 8(3532)30-81-73, e-mail: kma.or@mail.ru
Babicheva Irina Andreevna, Dr. Sci. (Biol.), Professor, Head of Department of Chemistry, Orenburg State Agrarian University, 460014, Orenburg, Russia, 18, Chelyuskintsev St., tel./fax: 8(3532)77-52-30, e-mail: babicheva74-09@mail.ru
Soboleva Natalya Vladimirovna, Cand. Sci (Agr.), Associate Professor, Department of Livestock Production and Processing Technology, Orenburg State Agrarian University, 460014, Orenburg, Russia, 18, Chelyuskintsev St., tel.: 89033676715, e-mail:natalya.soboleva12@mail.ru
Malchikov Roman Viktorovich, Cand. Sci (Agr.), Senior Lecturer, Department of Cynology, 614012, Perm, Russia, 125 Karpinskogo str., e-mail: malchikov00@bk.ru
Kholodilina Tatyana Nikolaevna, Cand. Sci (Agr.), Head of Test Centre CUC, Federal Research Centre of Biological Systems and Agrotechnologies of the Russian Academy of Sciences, 460000, Orenburg, Russia, 29, 9 Yanvarya St., tel.: 8(3532)30-81-77, e-mail: icvniims@mаil.ru Associate Professor, Departments of Ecology and Nature Management, 460018, Orenburg, Russia, Orenburg State University, 13 Pobedy Ave, e-mail: post@mail.osu.ru
Received: 6 December 2019; Accepted: 16 December 2019;Published: 31 December 2019