Гематологические показатели кефали Planiliza subviridis, обитающей в средах с различной солёностью
DOI:
https://doi.org/10.33910/2686-9519-2026-18-3-909-920Ключевые слова:
fish blood, mullet, Greenback mullet, Planiliza subviridis, hematological parameters, salinity, habitat, adaptationАннотация
Исследование было проведено с целью определения гематологических показателей и состава клеток периферической крови у рыбы Planiliza subviridis (Valenciennes, 1836) в двух естественных средах обитания – морской (32‰) и солоноватоводной (12,3‰). Все показатели крови находились в пределах нормы для рыб. Результаты показали отсутствие достоверных различий в эритрограмме двух групп рыб из разных местообитаний. Эритроциты P. subviridis имеют эллипсоидную форму, их средний размер составляет примерно 10,5×7,32 мкм. Доля миелобластов в лейкограмме рыб, обитающих в соленой воде ниже, чем у солоноводных кефалей. При этом процент лимфоцитов достигает более высокого уровня у рыб из соленой среды (95,1% против 90,0%). Не было зафиксировано признаков стресса, таких как повышение доли нейтрофилов и снижение доли лимфоцитов в гематологических показателях у рыб, успешно адаптировавшихся к естественным условиям морской и солоноватоводной среды. Полученные результаты вносят вклад в базу данных о клетках крови для эвригалинных видов рыб.
Библиографические ссылки
Литература
Лепилина, И. Н., Романов, А. А., Федорова, Н. Н. (2006) Некоторые гематологические показатели стерляди в речной и морской периоды жизни. Вестник Астраханского государственного технического университета, № 3 (32), с. 145–150.
Немова, Н. Н., Кяйвяряйнен, Е. И., Рендаков, Н. Л. и др. (2021) Содержание кортизола и активность Na+/K+-атфазы при адаптации молоди горбуши Oncorhynchus gorbuscha (Salmonidae) к изменению солёности среды. Вопросы ихтиологии, т. 61, № 5, с. 599–606. https://doi.org/10.31857/S0042875221050131
Пронина, Г. И., Корягина, Н. Ю. (2017) Методология физиолого-иммунологической оценки гидробионтов. СПб.: Лань, 96 с.
Пряхин, Ю. В. (2011) Азово-черноморская популяция пиленгаса. Наука Кубани, № 1, с. 4–16.
Солдатов, А. А., Рычкова, В. Н., Кухарева, Т. А., Рокотова, А. Г. (2023) Клеточный состав эритроидных форм в крови и головной почке кефали-сингиля (Chelon auratus Risso, 1810) на протяжении годового цикла. Российский физиологический журнал им. И. М. Сеченова, т. 109, № 7, с. 990–1001. https://doi.org/10.31857/S0869813923070130
Ahmed, I., Reshi, Q. M., Fazio, F. (2020) The influence of the endogenous and exogenous factors on hematological parameters in different fish species: A review. Aquaculture International, vol. 28, no. 3, pp. 869–899. https://doi.org/10.1007/s10499-019-00501-3
Aksentijević, K., Radalj, A., Marković, M. et al. (2023) Effects of transport and holding stress on Prussian carp (Carassius gibelio, Bloch, 1782) leukogram pattern. Acta Veterinaria, vol. 73, no. 2, pp. 179–194. https://doi.org/10.2478/acve-2023-0014
Al-Daraji, S., Mhaisen, F. (2023) Effect of the infection of the mugilid fish Planiliza subviridis with the copepod Ergasilus rostralis: A haematological study. Journal of Biological Studies, vol. 6, no. 3, pp. 264–272. https://doi.org/10.62400/jbs.v6i3.8325
Barman, U. K., Jana, S. N., Garg, S. K. et al. (2005) Effect of inland water salinity on growth, feed conversion efficiency and intestinal enzyme activity in growing grey mullet, Mugil cephalus (Linn.): Field and laboratory studies. Aquaculture International, vol. 13, no. 3, pp. 241–256. https://doi.org/10.1007/s10499-004-2479-5
Beck, M. W., Heck, K. L., Jr., Able, K. W. et al. (2003) The role of nearshore ecosystems as fish and shellfish nurseries. Issues in Ecology, no. 11, pp. 1–12.
Cardona, L. (2015) Biogeography and distribution of Mugilidae in the Mediterranean and the Black Sea, and North-East Atlantic. In: D. Crosetti, S. Blaber (eds.). Biology, ecology and culture of grey mullets (Mugilidae). Boca Raton: CRC Press, pp. 126–137. https://doi.org/10.1201/b19927-10
Clauss, T. M., Dove, A. D. M., Arnold, J. E. (2008) Hematologic disorders of fish. Veterinary Clinics of North America: Exotic Animal Practice, vol. 11, no. 3, pp. 445–462. https://doi.org/10.1016/j.cvex.2008.03.007
Dankwa, H., Blay JNR, J., Yankson, K. (2006) Potential for culture of grey mullets (Pisces:Mugilidae) in Ghana. Ghana Journal of Science, vol. 44, no. 1, pp. 19–27. https://doi.org/10.4314/gjs.v44i1.15897
Davis, A. K., Maney, D. L., Maerz, J. C. (2008) The use of leukocyte profiles to measure stress in vertebrates: A review for ecologists. Functional Ecology, vol. 22, no. 5, pp. 760–772. https://doi.org/10.1111/j.1365-2435.2008.01467.x
Durand, J.-D., Shen, K.-N., Chen, W.-J. et al. (2012) Systematics of the grey mullets (Teleostei: Mugiliformes: Mugilidae): Molecular phylogenetic evidence challenges two centuries of morphology-based taxonomy. Molecular Phylogenetics and Evolution, vol. 64, no. 1, pp. 73–92. https://doi.org/10.1016/j.ympev.2012.03.006
Faggio, C., Fedele, G., Arfuso, F. et al. (2014) Haematological and biochemical response of Mugil cephalus after acclimation to captivity. Cahiers de Biologie Marine, vol. 55, no. 1, pp. 31–36.
Fazio, F., Marafioti, S., Arfuso, F. et al. (2013) Influence of different salinity on haematological and biochemical parameters of the widely cultured mullet, Mugil cephalus. Marine and Freshwater Behaviour and Physiology, vol. 46, no. 4, pp. 211–218. https://doi.org/10.1080/10236244.2013.817728
Fazio, F., Saoca, C., Acar, Ü. et al. (2020) A comparative evaluation of hematological and biochemical parameters between the Italian mullet Mugil cephalus (Linnaeus 1758) and the Turkish mullet Chelon auratus (Risso 1810). Turkish Journal of Zoology, vol. 44, no. 1, pp. 22–30. https://doi.org/10.3906/zoo-1907-37
Fatimah, F., Rachmawati, F. N., Wibowo, E. S. (2017) Leukocyte differential of anguillid eel, Anguilla bicolor McClelland, exposed to varied salinities. Scripta Biologica, vol. 4, no. 2, pp. 79–83.
Harrison, I. J., Senou, H. (1999) Order Mugiliformes. Mugilidae. Mullets. In: K. E. Carpenter, V. H. Niem (eds.). FAO species identification guide for fishery purposes. The living marine resources of the Western Central Pacific. Vol. 4. Bony fishes part 2 (Mugilidae to Carangidae). Rome: FAO Publ., pp. 2069–2108.
Ishikawa-Ishiwata, Y., Luu, D. V., Kotera, A. et al. (2024) Impact of intensive aquaculture on aquatic microorganism ecosystems in Xuan Thuy National Park, Nam Dinh Province, Vietnam. Annual Report of Pro Natura Foundation Japan, vol. 33, pp. 144–153.
Leiva, F. P., Molina-Venegas, R., Alter, K. et al. (2026) ErythroCite: A database on red blood cell size of fishes. Zenodo. [Online]. Available at: https://doi.org/10.5281/zenodo.18543381 (accessed 02.04.2026).
Loi, B., Leggieri, F., Giménez Papiol, G. et al. (2022) Effects of salinity on lipids reserves, survival and growth of flathead grey mullet Mugil cephalus (Linnaeus, 1758). Aquaculture Research, vol. 53, no. 17, pp. 5979–5987. https://doi.org/10.1111/are.16066
Martins, B. O., Franco-Belussi, L., Siqueira, M. S. et al. (2021) The evolution of red blood cell shape in fishes. Journal of Evolutionary Biology, vol. 34, no. 3, pp. 537–548. https://doi.org/10.1111/jeb.13757
Megarani, D. V., Hardian, A. B., Arifianto, D. et al. (2020) Comparative morphology and morphometry of blood cells in Zebrafish (Danio rerio), Common Carp (Cyprinus carpio carpio), and Tilapia (Oreochromis niloticus). Journal of the American Association for Laboratory Animal Science, vol. 59, no. 6, pp. 673–680. https://doi.org/10.30802/AALAS-JAALAS-20-000013
Mohamadi, M., Bishkoul, G. R., Rastiannasab, A. et al. (2014) Physiological indicators of salinity stress in the grey mullet, Mugil cephalus, Linnaeus, 1758 juveniles. Comparative Clinical Pathology, vol. 23, no. 5, pp. 1453–1456. https://doi.org/10.1007/s00580-013-1804-7
Nakabo, T. (2002) Fishes of Japan: With pictorial keys to species. Vols. 1–2. Tokyo: Tokai University Press, 1749 p.
Nelson, J. S. (2006) Fishes of the world. 4th ed. Hoboken: John Wiley & Sons Publ., 601 p.
Parrino, V., Cappello, T., Costa, G. et al. (2018) Comparative study of haematology of two teleost fish (Mugil cephalus and Carassius auratus) from different environments and feeding habits. The European Zoological Journal, vol. 85, no. 1, pp. 193–199. https://doi.org/10.1080/24750263.2018.1460694
Refaey, M. M., Li, D. (2018) Transport stress changes blood biochemistry, antioxidant defense system, and hepatic HSPs mRNA expressions of channel catfish Ictalurus punctatus. Frontiers in Physiology, vol. 9, article 1628. https://doi.org/10.3389/fphys.2018.01628
Tran, D. T., Nguyen, V. Q., Tran, D. L. et al. (2014) Bach Long Vy national marine protected area: Potential and solutions for promoting values. Vietnam Journal of Marine Science and Technology, vol. 14, no. 3A, pp. 281–291.
Tue, N. T., Ngoc, N. T., Quy, T. D. et al. (2012) A cross-system analysis of sedimentary organic carbon in the mangrove ecosystems of Xuan Thuy National Park, Vietnam. Journal of Sea Research, vol. 67, no. 1, pp. 69–76. https://doi.org/10.1016/j.seares.2011.10.006
Urbina, M. A., Glover, C. N. (2015) Effect of salinity on osmoregulation, metabolism and nitrogen excretion in the amphidromous fish, inanga (Galaxias maculatus). Journal of Experimental Marine Biology and Ecology, vol. 473, pp. 7–15. https://doi.org/10.1016/j.jembe.2015.07.014
Whitfield, A. K., Panfili, J., Durand, J.-D. (2012) A global review of the cosmopolitan flathead mullet Mugil cephalus Linnaeus 1758 (Teleostei: Mugilidae), with emphasis on the biology, genetics, ecology and fisheries aspects of this apparent species complex. Reviews in Fish Biology and Fisheries, vol. 22, no. 3, pp. 641–681. https://doi.org/10.1007/s11160-012-9263-9
Witeska, M., Kondera, E., Bojarski, B. (2023) Hematological and hematopoietic analysis in fish toxicology — a review. Animals, vol. 13, no. 16, article 2625. https://doi.org/10.3390/ani13162625
Zarejabad, A. M., Jalali, M. A., Sudagar, M., Pouralimotlagh, S. (2010) Hematology of great sturgeon (Huso huso Linnaeus, 1758) juvenile exposed to brackish water environment. Fish Physiology and Biochemistry, vol. 36, no. 3, pp. 655–659. https://doi.org/10.1007/s10695-009-9339-1
References
Ahmed, I., Reshi, Q. M., Fazio, F. (2020) The influence of the endogenous and exogenous factors on hematological parameters in different fish species: A review. Aquaculture International, vol. 28, no. 3, pp. 869–899. https://doi.org/10.1007/s10499-019-00501-3 (In English)
Aksentijević, K., Radalj, A., Marković, M. et al. (2023) Effects of transport and holding stress on Prussian carp (Carassius gibelio, Bloch, 1782) leukogram pattern. Acta Veterinaria, vol. 73, no. 2, pp. 179–194. https://doi.org/10.2478/acve-2023-0014 (In English)
Al-Daraji, S., Mhaisen, F. (2023) Effect of the infection of the mugilid fish Planiliza subviridis with the copepod Ergasilus rostralis: A haematological study. Journal of Biological Studies, vol. 6, no. 3, pp. 264–272. https://doi.org/10.62400/jbs.v6i3.8325 (In English)
Barman, U. K., Jana, S. N., Garg, S. K. et al. (2005) Effect of inland water salinity on growth, feed conversion efficiency and intestinal enzyme activity in growing grey mullet, Mugil cephalus (Linn.): Field and laboratory studies. Aquaculture International, vol. 13, no. 3, pp. 241–256. https://doi.org/10.1007/s10499-004-2479-5 (In English)
Beck, M. W., Heck, K. L., Jr., Able, K. W. et al. (2003) The role of nearshore ecosystems as fish and shellfish nurseries. Issues in Ecology, no. 11, pp. 1–12. (In English)
Cardona, L. (2015) Biogeography and distribution of Mugilidae in the Mediterranean and the Black Sea, and North-East Atlantic. In: D. Crosetti, S. Blaber (eds.). Biology, ecology and culture of grey mullets (Mugilidae). Boca Raton: CRC Press, pp. 126–137. https://doi.org/10.1201/b19927-10 (In English)
Clauss, T. M., Dove, A. D. M., Arnold, J. E. (2008) Hematologic disorders of fish. Veterinary Clinics of North America: Exotic Animal Practice, vol. 11, no. 3, pp. 445–462. https://doi.org/10.1016/j.cvex.2008.03.007 (In English)
Dankwa, H., Blay JNR, J., Yankson, K. (2006) Potential for culture of grey mullets (Pisces:Mugilidae) in Ghana. Ghana Journal of Science, vol. 44, no. 1, pp. 19–27. https://doi.org/10.4314/gjs.v44i1.15897 (In English)
Davis, A. K., Maney, D. L., Maerz, J. C. (2008) The use of leukocyte profiles to measure stress in vertebrates: A review for ecologists. Functional Ecology, vol. 22, no. 5, pp. 760–772. https://doi.org/10.1111/j.1365-2435.2008.01467.x (In English)
Durand, J.-D., Shen, K.-N., Chen, W.-J. et al. (2012) Systematics of the grey mullets (Teleostei: Mugiliformes: Mugilidae): Molecular phylogenetic evidence challenges two centuries of morphology-based taxonomy. Molecular Phylogenetics and Evolution, vol. 64, no. 1, pp. 73–92. https://doi.org/10.1016/j.ympev.2012.03.006 (In English)
Faggio, C., Fedele, G., Arfuso, F. et al. (2014) Haematological and biochemical response of Mugil cephalus after acclimation to captivity. Cahiers de Biologie Marine, vol. 55, no. 1, pp. 31–36. (In English)
Fatimah, F., Rachmawati, F. N., Wibowo, E. S. (2017) Leukocyte differential of anguillid eel, Anguilla bicolor McClelland, exposed to varied salinities. Scripta Biologica, vol. 4, no. 2, pp. 79–83. (In English)
Fazio, F., Marafioti, S., Arfuso, F. et al. (2013) Influence of different salinity on haematological and biochemical parameters of the widely cultured mullet, Mugil cephalus. Marine and Freshwater Behaviour and Physiology, vol. 46, no. 4, pp. 211–218. https://doi.org/10.1080/10236244.2013.817728 (In English)
Fazio, F., Saoca, C., Acar, Ü. et al. (2020) A comparative evaluation of hematological and biochemical parameters between the Italian mullet Mugil cephalus (Linnaeus 1758) and the Turkish mullet Chelon auratus (Risso 1810). Turkish Journal of Zoology, vol. 44, no. 1, pp. 22–30. https://doi.org/10.3906/zoo-1907-37 (In English)
Harrison, I. J., Senou, H. (1999) Order Mugiliformes. Mugilidae. Mullets. In: K. E. Carpenter, V. H. Niem (eds.). FAO species identification guide for fishery purposes. The living marine resources of the Western Central Pacific. Vol. 4. Bony fishes part 2 (Mugilidae to Carangidae). Rome: FAO Publ., pp. 2069–2108. (In English)
Ishikawa-Ishiwata, Y., Luu, D. V., Kotera, A. et al. (2024) Impact of intensive aquaculture on aquatic microorganism ecosystems in Xuan Thuy National Park, Nam Dinh Province, Vietnam. Annual Report of Pro Natura Foundation Japan, vol. 33, pp. 144–153. (In English)
Leiva, F. P., Molina-Venegas, R., Alter, K. et al. (2026) ErythroCite: A database on red blood cell size of fishes. Zenodo. [Online]. Available at: https://doi.org/10.5281/zenodo.18543381 (accessed 02.04.2026). (In English)
Lepilina, I. N., Romanov, A. A., Fedorova, N. N. (2006) Some hematologic indices of sterlet during the river and sea periods of life. Vestnik of Astrakhan State Technical University, no. 3 (32), pp. 145–150. (In Russian)
Loi, B., Leggieri, F., Giménez Papiol, G. et al. (2022) Effects of salinity on lipids reserves, survival and growth of flathead grey mullet Mugil cephalus (Linnaeus, 1758). Aquaculture Research, vol. 53, no. 17, pp. 5979–5987. https://doi.org/10.1111/are.16066 (In English)
Martins, B. O., Franco-Belussi, L., Siqueira, M. S. et al. (2021) The evolution of red blood cell shape in fishes. Journal of Evolutionary Biology, vol. 34, no. 3, pp. 537–548. https://doi.org/10.1111/jeb.13757 (In English)
Megarani, D. V., Hardian, A. B., Arifianto, D. et al. (2020) Comparative morphology and morphometry of blood cells in Zebrafish (Danio rerio), Common Carp (Cyprinus carpio carpio), and Tilapia (Oreochromis niloticus). Journal of the American Association for Laboratory Animal Science, vol. 59, no. 6, pp. 673–680. https://doi.org/10.30802/AALAS-JAALAS-20-000013 (In English)
Mohamadi, M., Bishkoul, G. R., Rastiannasab, A. et al. (2014) Physiological indicators of salinity stress in the grey mullet, Mugil cephalus, Linnaeus, 1758 juveniles. Comparative Clinical Pathology, vol. 23, no. 5, pp. 1453–1456. https://doi.org/10.1007/s00580-013-1804-7 (In English)
Nakabo, T. (2002) Fishes of Japan: With pictorial keys to species. Vols. 1–2. Tokyo: Tokai University Press, 1749 p. (In English)
Nelson, J. S. (2006) Fishes of the world. 4th ed. Hoboken: John Wiley & Sons Publ., 601 p. (In English)
Nemova, N. N., Kaivarainen, E. I., Rendakov, N. L. et al. (2021) Cortisol content and Na+/K+-ATPase activity under adaptation of juvenile pink salmon Oncorhynchus gorbuscha (Salmonidae) to salinity changes. Journal of Ichthyology, vol. 61, no. 5, pp. 599–606. https://doi.org/10.31857/S0042875221050131 (In Russian)
Parrino, V., Cappello, T., Costa, G. et al. (2018) Comparative study of haematology of two teleost fish (Mugil cephalus and Carassius auratus) from different environments and feeding habits. The European Zoological Journal, vol. 85, no. 1, pp. 193–199. https://doi.org/10.1080/24750263.2018.1460694 (In English)
Pronina, G. I., Koryagina, N. Yu. (2017) Methodology for physiological and immunological assessment of aquatic organisms. Saint Petersburg: Lan’ Publ., 96 p. (In Russian)
Pryakhin, Yu. V. (2011) Azov-Black Sea population of Mugil so-iuy. Nauka Kubani, no. 1, pp. 4–16. (In Russian)
Refaey, M. M., Li, D. (2018) Transport stress changes blood biochemistry, antioxidant defense system, and hepatic HSPs mRNA expressions of channel catfish Ictalurus punctatus. Frontiers in Physiology, vol. 9, article 1628. https://doi.org/10.3389/fphys.2018.01628 (In English)
Soldatov, A. A., Rychkova, V. N., Kukhareva, T. A., Rokotova, A. G. (2023) Cellular composition of erythroid forms in the blood and head kidney of the golden grey mullet (Chelon auratus Risso, 1810) during the annual cycle. Russian Journal of Physiology, vol. 109, no. 7, pp. 990–1001. (In Russian)
Tran, D. T., Nguyen, V. Q., Tran, D. L. et al. (2014) Bach Long Vy national marine protected area: Potential and solutions for promoting values. Vietnam Journal of Marine Science and Technology, vol. 14, no. 3A, pp. 281–291. (In Vietnamese)
Tue, N. T., Ngoc, N. T., Quy, T. D. et al. (2012) A cross-system analysis of sedimentary organic carbon in the mangrove ecosystems of Xuan Thuy National Park, Vietnam. Journal of Sea Research, vol. 67, no. 1, pp. 69–76. https://doi.org/10.1016/j.seares.2011.10.006 (In English)
Urbina, M. A., Glover, C. N. (2015) Effect of salinity on osmoregulation, metabolism and nitrogen excretion in the amphidromous fish, inanga (Galaxias maculatus). Journal of Experimental Marine Biology and Ecology, vol. 473, pp. 7–15. https://doi.org/10.1016/j.jembe.2015.07.014 (In English)
Whitfield, A. K., Panfili, J., Durand, J.-D. (2012) A global review of the cosmopolitan flathead mullet Mugil cephalus Linnaeus 1758 (Teleostei: Mugilidae), with emphasis on the biology, genetics, ecology and fisheries aspects of this apparent species complex. Reviews in Fish Biology and Fisheries, vol. 22, no. 3, pp. 641–681. https://doi.org/10.1007/s11160-012-9263-9 (In English)
Witeska, M., Kondera, E., Bojarski, B. (2023) Hematological and hematopoietic analysis in fish toxicology — a review. Animals, vol. 13, no. 16, article 2625. https://doi.org/10.3390/ani13162625 (In English)
Zarejabad, A. M., Jalali, M. A., Sudagar, M., Pouralimotlagh, S. (2010) Hematology of great sturgeon (Huso huso Linnaeus, 1758) juvenile exposed to brackish water environment. Fish Physiology and Biochemistry, vol. 36, no. 3, pp. 655–659. https://doi.org/10.1007/s10695-009-9339-1 (In English)
Загрузки
Опубликован
Выпуск
Раздел
Лицензия
Copyright (c) 2026 Чан Ван Дат, Пронина Галина Иозеповна

Это произведение доступно по лицензии Creative Commons «Attribution» («Атрибуция») 4.0 Всемирная.
Авторы предоставляют материалы на условиях публичной оферты и лицензии CC BY 4.0. Эта лицензия позволяет неограниченному кругу лиц копировать и распространять материал на любом носителе и в любом формате в любых целях, делать ремиксы, видоизменять, и создавать новое, опираясь на этот материал в любых целях, включая коммерческие.
Данная лицензия сохраняет за автором права на статью, но разрешает другим свободно распространять, использовать и адаптировать работу при обязательном условии указания авторства. Пользователи должны предоставить корректную ссылку на оригинальную публикацию в нашем журнале, указать имена авторов и отметить факт внесения изменений (если таковые были).
Авторские права сохраняются за авторами. Лицензия CC BY 4.0 не передает права третьим лицам, а лишь предоставляет пользователям заранее данное разрешение на использование при соблюдении условия атрибуции. Любое использование будет происходить на условиях этой лицензии. Право на номер журнала как составное произведение принадлежит издателю.





