pdf35Ribogospod. nauka Ukr., 2017; 2(40): 78-98
DOI: https://doi.org/10.15407/fsu2017.02.078 
УДК 597-111.12:597.442

Peculiarities of hemopoisis in sturgeons species (Acipenseridae) (a review)

I. Hrytsyniak, This email address is being protected from spambots. You need JavaScript enabled to view it. , Institute of Fisheries NAAS, Kyiv
M. Simon, This email address is being protected from spambots. You need JavaScript enabled to view it. , Institute of Fisheries NAAS, Kyiv

Purpose. To analyze data from scientific sources of information regarding the species-specific features of the hematopoietic and histo-morphological characteristics of hematopoietic tissues and organs of sturgeons (Acipenseridae). Consider the general aspects of their structure at different stages of ontogeny. To present the general features of differentiation and proliferation of blood elements.

Findings. A review of scientific papers and literature has revealed that hematopoiesis in sturgeon species of fish differs significantly from that of mammals (Mammalia), but also from other fish from cartilaginous (Chondrichthyes) and bony (Osteichthyes) classes. Moreover, sturgeon fishes are characterized by a species-specificity in the development of hemopoiesis organs on each stage of ontogenesis. The age-related changes of the developing blood cells, ranging from blast elements (erythroblasts, lymphoblasts, monoblasts, myeloblasts) to the appearance of mature (definitive) forms, are marked. The specific heterochrony is revealed in the development of sturgeon blood cells. The organs of hemopoiesis are: hemopoietic cranial or lymphoid organ, gills, spleen, heart, thymus, gastrointestinal tract (anterior part of the digestive canal, pyloric gland, middle intestine, spiral valve and liver) and kidneys (pronephros and mesonephros). Hepatic hematosis begins to be realized during the larval period of development from a massive spread near the vascular connective tissue. A little bit later in the age of 15 days of active feeding, a similar spread covers practically all area of the body. At this time in liver hepatocytes and reticular cells with developing blood corpuscle are precisely allocated. In this period, proliferation of all cellular lines: erythropoietic, lymphocytopoietic, myelocytopoietic, and also thrombocytopoiesis take place in liver. The plasmocyte differentiation occurs in cranial haematogenic organ of sturgeon. In reticular tissue of lymphoid organ, thrombocyte precursors — megakariocytes were found. Mesonephros is a hemopoietic organ, which first starts to perform the hemopoietic function, and executes it until the end of the life cycle of fish. Cell development of erythropoietic and lymphocytopoiesis series is over in the prolarvaperiod of the development in the hematopoietic tissue of the kidney, and the formation of the granular series occurs in the larval period, and eosinophilic myelocytes are marked much earlier than in other hematopoietic organs (the 43 stage of the development), and a bit later — neutrophil myelocytes.

Practical value. Systematized data on the specifics of hematopoiesis processes and patterns of development of hemopoietic organs in sturgeon species will be useful both for researchers and fish farmers. This is due to the fact that the course of hemopoiesis most fully reflects each specific stage of the development of sturgeon species, being an instant reaction of a number of body tissues to any changes in the internal and external environment.

Keywords: sturgeon species of fish (Acipenseridae), hemopoiesis, hemocytoblasts, white blood, red blood, hematopoietic cranial organ, branchial gill, spleen, heart, thymus, gastrointestinal tract, mesonephros, hepatolateral hemopoiesis.

REFERENCES

  1. Orkin, S. H., & Zon, L. I. (2008). Hematopoiesis: An Evolving Paradigm for Stem Cell Biology. Cell, 132, 631-644. https://doi.org/10.1016/j.cell.2008.01.025 
  2. Hoffbrand, V., Moss, P., & Pettit, J. (2006). Essential Haematology (5-th edn). Malden, Mass.: Blackwell Pub.
  3. Alberts, B., Johnson, A., Lewis, J., Raff, M., Roberts, K., & Walter, P. (2007). Molecular Biology of the Cell (5th edn). Garland Science.
  4. Stem cell information. stemcells.nih.gov. The National Institutes of Health resource for stem cell research. Retrieved from https://stemcells.nih.gov/info/scireport/chapter5.htm.
  5. Puchkov, N. V. (1954). Fiziologiya ryb. Moskva.
  6. Stroganov, N. S. (1956). Fiziologicheskaya prisposoblyaemost' ryb k temperature vody. Moskva.
  7. Organy, uchastvuyushchie v protsesse krovetvoreniya. biofinder.ru. Retrieved from http://www.biofinder.ru/bfins-949-1.html.
  8. Grushko, M. P. (2002). Morfo-fiziologicheskie osobennosti gemopoeza u osetrovykh: na primere polovozrelykh samok. Candidate’s thesis. Astrakhan'.
  9. Gemopoez u ryb. medlec.org. Retrieved from http://medlec.org/lek-26182.html.
  10. Koziy, M. S., & Sherman, I. M. (2012). Osobennosti gistomorfofunktsional'noy organizatsii limfoidnogo organa belugi (Huso huso Linnaeus, 1758). Ribogospodars'ka nauka Ukrayiny, 2, 104-106.
  11. Grushko, M. P. (2010). Kletochnyy sostav krovetvornykh organov polovozrelykh samok predstaviteley klassa ryb, zemnovodnykh i presmykayushchikhsya. Doctor’s thesis. Astrakhan'.
  12. Lozhnichenko, O. V. (2007). Tsitogenez formennykh elementov krovi i osobennosti formirovaniya organov krovetvoreniya u osetrovykh ryb. Doctor’s thesis. Astrakhan'.
  13. Mil'shteyn, V. V. (1982). Osetrovodstvo. Moskva: Legkaya i pishchevaya promyshlennost'.
  14. Kaufman, Z. S. (1990). Embriologiya ryb. Moskva: Agropromizdat.
  15. Zhiteneva, L. D. (2000). Ekologicheskie zakonomernosti ikhtiogematologii. Rostov-na-Donu: AzNIIRKh.
  16. Grushko, M. P., Lozhnichenko, N. N., & Fedorova, O. V. (2009). Gemopoez u osetrovykh ryb: monografiya. Astrakhan': Triada.
  17. Ivanova, N. T. (1982). Atlas kletok krovi ryb. Sravnitel'naya morfologiya i klassifikatsiya formennykh elementov krovi ryb. Moskva.
  18. Ivanova, N. T. (2002). Nekotorye aspekty k osnovam ikhtiogematologii. Rostov-na-Donu: RGPU.
  19. Grushko, M. P. (2006). Krovetvorenie v kranial'nom organe proizvoditeley osetrovykh ryb. Vestnik AGTU, 3(32), 141-144.
  20. Dekhtiarov, P. A., Yevtushenko, M. Iu., & Sherman, I. M. (2008). Fiziolohiia ryb: pidruchnyk. Kyiv: Ahrar. osvita. 
  21. Lozhnichenko, O. V. (2005). Polustvolovye kletki krovi i ikh differentsirovka v raznykh organakh krovetvoreniya u molodi russkogo osetra. Vestnik VolGMU, 3(15), 13-17.
  22. Grushko, M. P., & Fedorova, N. N. (2003). Zhabry osetrovykh ryb kak organy krovetvoreniya. Uspekhi sovremennogo estestvoznaniya, 5, 49.
  23. Lozhnichenko, O. V. (2005). Polustvolovye kletki i ikh differentsirovka v selezenke molodi russkogo osetra. Vestnik AGTU, 3(26), 85-88.
  24. Lozhnichenko, O. V. (2006). Polustvolovye kletki krovi i ikh differentsirovka v selezenke lichinok osetrovykh ryb. Vestnik AGTU, 3 (32), 135-140.
  25. Valova, V. N. (2011). Fiziologicheskoe sostoyanie molodi amurskikh osetrovykh ryb, vyrashchivaemykh v usloviyakh lososevogo rybovodnogo zavoda. Izvestiya TINRO, 167, 207-222.
  26. Yarzhombek, A. A., Limanskiy, V. V., & Shcherbina, T. V. et al. (1986). Spravochnik po fiziologii ryb. Yarzhombek, A. A. (Ed.). Moskva: Agropromizdat.
  27. Skvortsov, A. P. (1947). O stroenii selezenki kostistykh ryb. DAN SSSR. VIII, 6, 94-98.
  28. Skvortsov, A. P. (1947). Krovenosnaya sistema selezenki kostistykh ryb. Moskva.
  29. Shmal'gauzen, I. I. (1938). Organizm kak tseloe v individual'nom i istoricheskom razvitii. Moskva: AN SSSR.
  30. Shmal'gauzen, I. I. (1939). Puti i vozmozhnosti evolyutsionnogo protsessa. Moskva.
  31. Shmal'gauzen, I. I. (1947). Osnovy sravnitel'noy gistologii. Moskva.
  32. Zavarzin, A. A. (1953). Ocherki po evolyutsionnoy gistologii krovi i soedinitel'noy tkani. Izbrannye trudy, 4.
  33. Zavarzin, A. A. (1976). Osnovy chastnoy tsitologii i sravnitel'noy gistologii mnogokletochnykh zhivotnykh. Leningrad: Nauka.
  34. Zavarzin, A. A. (1985). Osnovy sravnitel'noy gistologii. Leningrad: Leningradskiy un-t.
  35. Ivanova, N. T. (1995). Sistema krovi. Materialy k sravnitel'noy morfologii sistemy krovi cheloveka i zhivotnykh. Rostov-na-Donu.
  36. Ivanova, N. T. (1970). Materialy k morfologii krovi ryb. Rostov-na-Donu.
  37. Kul'chitskiy, K. I., & Romenskiy, O. Yu. (1985). Sravnitel'naya anatomiya i evolyutsiya krovenosnykh sosudov serdtsa. Kyiv: Zdorov'ya.
  38. Lozhnichenko, O. V. (2008). Epikardial'nyy krovetvornyy organ segoletok osetrovykh ryb. Vestnik AGTU, 3 (44), 53-55.
  39. Fedorova, N. N., & Lozhnichenko, O. V. (2004). K voprosu o krovetvorenii u lichinok i molodi belugi. Fundamental'nye issledovaniya, 2, 179-179.
  40. Lozhnichenko, O. V., & Fedorova, N. N. (2008). Kharakteristika gepatolateral'nogo tipa krovetvoreniya u osetrovykh ryb v rannem ontogeneze. Vestnik AGTU, 3 (44), 56-60.
  41. Yanin, V. L. (2000). Mezonefros. Struktura i funktsii. Tyumen'.
  42. Yanin, V. L., Dunaev, P. V., Solov'ev, G. S., Panteleev, S. M., & Mataev, S. I. (2000). Mezonefros. Ekaterinburg.
  43. Bobrova, O. V. (2006). Morfologicheskie osobennosti mezonefrosa osetrovykh v predlichinochnyy, lichinochnyy i mal'kovyy periody razvitiya. Candidate’s thesis. Astrakhan'.
  44. Lepilina, I. N. (2005). Sostoyanie mezonefrosa osetrovykh v sovremennykh ekologicheskikh usloviyakh. Vestnik OGU, 12, 47-50.
  45. Romanov, A. A., Lepilina, I. N., & Romanov, A. A. (2006). Morfofunktsional'nye narusheniya pochek osetrovykh i kostistykh ryb Volgo-Kaspiya v sovremennykh usloviyakh. Tsitologiya, 1, 5-8.
  46. Lozhnichenko, O. V., Ampleeva, A. V., & Khvostova, S. M. (2010). Fiziologicheskie aspekty krovektvoreniya v mezonefrose u osetrovykh ryb. Vestnik AGTU, 2, 106-111.
  47. Lozhnichenko, O. V., & Fedorova, N. N. (2003). Issledovanie kletok krovetvornoy tkani mezonefrosa lichinok i molodi osetrovykh. Uspekhi sovremennogo estestvoznaniya, 9, 98-99.
  48. Detlaf, T. A., & Ginzburg, A. S. (1954). Zarodyshevoe razvitie osetrovykh ryb (sevryugi, osetra, belugi) v svyazi s voprosami ikh razvedeniya. Moskva: AN SSSR.
  49. Detlaf, T. A., Ginzburg, A. S., & Shmal'gauzen, O. I. (1981). Razvitie osetrovykh ryb. Sozrevanie yaits, oplodotvorenie, razvitie zarodyshey i predlichinok. Moskva: Nauka.
  50. Lepilina, I. N. (2007). Razvitie mezonefrosa u predlichinok osetrovykh (Acipenseridae) ryb. Voprosy ikhtiologii, 1, 86-92.
  51. Bobrova, O. V. (2005). Formirovanie mochevydelitel'noy funktsii v mezonefrose osetrovykh ryb na 36–45-y stadiyakh embriogeneza. Vestnik AGTU, 3, 73-78.
  52. Lozhnichenko, O. V., Zagriychuk, V. P., Kuchkova, A. V., & Myastsova, P. V. (2009). Osobennosti formirovaniya vosproizvoditel'noy funktsii mezonefrosa russkogo osetra pri gormonal'noy stimulyatsii. Vestnik AGTU, 2, 60-66.