Patterns of linear growth and formation of annulus on scales of pacific herring in Peter the Great Bay
https://doi.org/10.26428/1606-9919-2023-203-357-370
EDN: XKDNUO
Abstract
The data on linear growth and the scale annuli forming are generalized for pacific herring in Peter the Great Bay. The growth zone on scales begins in April-May, whereas the annuli of slow growth are formed from October to January. The phenological season of active somatic growth also starts in April-May for herring in this area, the largest gains of the body length are detected in late summer — early autumn, and the active growth ends by NovemberDecember. Size diversity for young fish depends on starting conditions of growth in the first year of life and the timing of puberty. The diversity increases for adults because of the growth accelerating for the fish dwelling in local favorable environments with longer growing season.
About the Author
L. A. ChernoivanovaRussian Federation
Ludmila A. Chernoivanova, leading specialist
4, Shevchenko Alley, Vladivostok, 690091
References
1. Ambrose, A.I., The herring (Clupea harengus pallasi C. V.) of Peter the Great Bay, Izv. Tikhookeanskogo Nauchnyogo Instituta Rybnogo Khozyaystva, 1931, vol. 6.
2. Brett, J.R., Environmental factors and growth, in Fish Physiology, vol. 8: Bioenergetics and Growth, Hoar, W.S., Randall, D.J., Brett, J.R., Eds., New York: Academic Press, 1979, vol. 10, pp. 599–675.
3. Vdovin, A.N., Boyko, V.M., and Chetyrbotsky, A.N., Growth dynamics of yellow-striped flounder Pseudopleuronectes herzensteini (Pleuronectidae), Vopr. Rybolov., 2022, vol. 23, no. 1, pp. 62–73. doi 10.36038/0234-2774-2022-23-1-62-73
4. Dgebuadze, Yu.Yu., Ekologicheskiye zakonomernosti izmenchivosti rosta ryb (Ecological aspects of fish growth variability), Moscow: Nauka, 2001.
5. Druzhinin, A.D., Materials on the biology of Aniv herring, Izv. Tikhookean. Nauchno-Issled. Inst. Rybn. Khoz. Okeanogr., 1957, vol. 44, pp. 13–38.
6. Zuenko, Yu.I., Promyslovaya okeanologiya Yaponskogo morya (Fisheries Oceanography of the Japan Sea), Vladivostok: TINRO-Tsentr, 2008.
7. Ivshina, E.R., The main features of biology and the current state of stocks of herring (Clupea pallasii Valenciennes, 1847) in southwestern Sakhalin, Extended Abstract of Cand. Sci. (Biol.) Dissertation, Yuzhno-Sakhalinsk: SakhNIRO, 2008.
8. Kazanskiy, B.N., Patterns of gametogenesis and ecological plasticity of fish reproduction, in Ekologicheskaya plastichnost’ polovykh tsiklov i razmnozheniya ryb (Ecological plasticity of sex cycles and fish reproduction), Leningrad: Leningrad. Gos. Univ., 1975, pp. 3–32.
9. Kachina, T.F., The growth of Korfo-Karagin herring and the time of laying the annual ring, Izv. Tikhookean. Nauchno-Issled. Inst. Rybn. Khoz. Okeanogr., 1967, vol. 57, pp. 142–153.
10. Kachina, T.F., Herring of the western part of the Bering Sea (Sel’d’ zapadnoy chasti Beringova morya), Moscow: Legkaya i Pishchevaya Promyshlennost’, 1981.
11. Kozlov, B.M., Biology and herring fishing in the northern part of the Tatar Strait, Izv. Tikhookean. Nauchno-Issled. Inst. Rybn. Khoz. Okeanogr., 1968, vol. 65, pp. 3–11.
12. Lapin, V.I., Lapina, N.N., and Shatunovsky, M.I., Patterns of intraspecific variability of metabolic processes and reproduction patterns in fish, in Osobennosti reproduktivnykh tsiklov u ryb v vodoyemakh raznykh shirot (Features of reproductive cycles in fish in reservoirs of different latitudes), Moscow: Nauka, 1985, pp. 65–77.
13. Melnikov, I.V. and Kuznetsova, N.A., Featuries of herring concentration in the northern Okhotsk Sea in September of 1998 and 1999, Izv. Tikhookean. Nauchno-Issled. Inst. Rybn. Khoz. Okeanogr., 2002, vol. 130, pp. 1159–1170.
14. Mina, M.V. and Klevezal’, G.A., Rost zhivotnykh: analiz na urovne organizma (Animal Growth: An Analysis on the Level of Organism), Moscow: Nauka, 1976.
15. Naumenko, N.I., Biologiya i promysel morskikh sel’dei Dal’nego Vostoka (Biology and Harvesting of Sea Herring in the Far East), Petropavlovsk-Kamchatsky: Kamchatsky Pechatny Dvor, 2001.
16. Naumenko, N.I., On the growth of Pacific herring Clupea pallasii Valenciennes (Clupeidae), Issled. Vodn. Biol. Resur. Kamchatki Sev.-Zapadn. Chasti Tikhogo Okeana, 2002, vol. 6, pp. 67–74.
17. Polyakov, G.D., Ekologicheskiye zakonomernosti populyatsionnoy izmenchivosti ryb (Ecological patterns of fish population variation), Moscow: Nauka, 1975.
18. Posadova, V.P., Interannual variability in the spawning of herring in the gulf of Peter the Great Bay, in Sel’devyye severnoy chasti Tikhogo okeana (Herring of the North Pacific Ocean), Vladivostok: TINRO, 1985, pp. 22–29.
19. Posadova, V.P., Otchet Nauchno-Issled. Rab. “Sostoyaniye zapasov i struktura populyatsii sel’di zaliva Petra Velikogo” (Res. Rep. “Status of stocks and population structure of the herring population of Peter the Great Bay”), Available from TINRO-Tsentr, 1995, Vladivostok, no. GR 01880073029; inv. no. 22028.
20. Pravdin, I.F., Rukovodstvo po izucheniyu ryb (Guide to the Study of Fish), Moscow: Pishchevaya Promyshlennost’, 1966.
21. Pravotorova, E.P., Some data on the biology of the Gizhiga–Kamchatka herring due to the fluctuation of its number and the change in the feeding range, Izv. Tikhookean. Nauchno-Issled. Inst. Rybn. Khoz. Okeanogr, 1965, vol. 59, pp. 102–128.
22. Pushchina, O.I., Solomatov, S.F., and Borisov, B.M., Features of feeding for pacific herring Clupea pallasii, walleye pollock Theragra chalcogramma, and arabesque greenling Pleurogrammus azonus in Peter the Great Bay (Japan Sea) in summer season, Izv. Tikhookean. Nauchno-Issled. Inst. Rybn. Khoz. Okeanogr., 2014, vol. 176, pp. 189–200.
23. Ricker, W.E., Quantitative indicators and models of fish growth, in Fish Physiology, vol. 8: Bioenergetics and Growth, Hoar, W.S., Randall, D.J., Brett, J.R., eds, New York: Academic Press, 1979, vol. 10.
24. Smirnov, A.A., Gizhiginsko-kamchatskaya sel’d’ (The Gizhigin-Kamchatka Herring), Magadan: MagadanNIRO, 2009.
25. Tyurnin, B.V., Structure of the spawning population of herring in the northwestern part of the Sea of Okhotsk, its dynamics and biological basis for predicting catch, Extended Abstract of Cand. Sci. (Biol.) Dissertation, Vladivostok: TINRO, 1975.
26. Chernoivanova, L.A., Dynamics of linear growth rate in herring, Clupea pallasii, from Peter the Great Bay, Sea of Japan, J. Ichthyol., 2020, vol. 60, no. 2, pp. 280–288. doi 10.1134/ S0032945220020046
27. Chernoivanova, L.A., To the method of back calculation of length of herring Clupea pallasii Val. in Peter the Great Bay (the Japan Sea), in Mater. 6-y Vseross. Nauchno-Pract. Konf. “Prirodnye resursy, ikh sovremennoe sostoyanie, okhrana, promyslovoe i tekhnicheskoe ispol’zovanie” (Proc. 6th All-Russ. Sci.-Pract. Conf. “Natural Resources, Their Current State, Conservation, and Commercial and Technical Use”), Petropavlovsk-Kamchatsky: Kamchatskii Gos. Tekh. Univ., 2015, part 1, pp. 154–159.
28. Chernoivanova, L.A., Growth of young Pacific herring Clupea pallasii of Peter the Great Bay (Sea of Japan ), J. Ichthyol., 2017, vol. 57, no. 3, pp. 372–379. doi 10.1134/S0032945217020047
29. Chernoivanova, L.A. and Kim, L.N., Size differentiation in even–aged classes of herring Clupea pallasii Val. in Peter the Great Bay (Japan Sea), Marine Biological Research: achievements and perspectives: Proceedings of All-Russian Scientific-Practical Conference with International Participation dedicated to the 145th anniversary of Sevastopol Biological Station, Sevastopol: EKOSIGidrofizika, 2016, vol. 3, pp. 475–478.
30. Ojaveer, H., Tomkiewicz, J., Arula, T., and Klais, R., Female ovarian abnormalities and reproductive failure of autumn-spawning herring (Clupea harengus membras) in the Baltic Sea, ICES J. Mar. Sci., 2015, vol. 72, no. 8, pp. 2332–2340. doi 10.1093/icesjms/fsv103
Review
For citations:
Chernoivanova L.A. Patterns of linear growth and formation of annulus on scales of pacific herring in Peter the Great Bay. Izvestiya TINRO. 2023;203(2):357-370. (In Russ.) https://doi.org/10.26428/1606-9919-2023-203-357-370. EDN: XKDNUO