DOI QR코드

DOI QR Code

Early Osteological Development and Squamation in the Spotted Sea Bass Lateolabrax maculates (Pisces: Lateolabracidae)

한국산 점농어(Lateolabrax maculatus) 자치어의 골격발달과 비늘형성

  • Kang, Chung-Bae (Korea Inter-University Institute of Ocean Science, Pukyong National University) ;
  • Myoung, Jung-Goo (Marine Living Resources Research Department, Korea Ocean Research & Development Institute) ;
  • Kim, Yong-Uk (Department of Marine Biology, Pukyong National University) ;
  • Kim, Hyong-Chol (Division of Environmental Research, National Fisheries Research & Development Institute)
  • Received : 2012.04.05
  • Accepted : 2012.06.04
  • Published : 2012.06.30

Abstract

Early osteological development of the skull, vertebral column, and fins, and squamation in the spotted sea bass, Lateolabrax maculates, were studied under extensive larval rearing conditions. The first ossification during cephalic skeleton development began with the premaxillary, dentary, and parasphenoid at 6.4 mm Total length (Notochord length 6.1 mm) and was completed by 25.2 mm TL (Standard length 20.3 mm). Ossification of the cartilaginous caudal complex started simultaneously in the urostyle and two preural centra at 12.2 mm TL (10.4 mm) and it was completely ossified by 32.0 mm TL (26.4 mm). The principal caudal fin rays, with a count of 9/8, began to ossify at 11.6 mm TL (10.2 mm) and the procurrent caudal fin rays, with counts of 4 (upper) and 3 (lower), started to ossify by 12.6 mm TL (10.9 mm). Ossification of these parts was completed by 21.4 mm TL (17.5 mm). Ossification of the vertebral column was first observed in the first to fourth centra at 8.3 mm TL (7.5 mm) and was fully completed by 21.7-35.0 mm TL (17.8-29.3 mm). The pectoral girdle started to ossify by 5.6 mm TL (5.4 mm) and was completed by 26.8 mm TL (21.8 mm). Eight pectoral fin rays were ossified at 11.6 mm TL (10.2 mm) and 16-18 rays were fully ossified by 13.8 mm TL (12.0 mm). Also, the dorsal, anal, and pelvic fin rays started to ossify at 12.2 mm TL (10.4 mm) and were completed by 12.8 mm TL (11.2 mm), 23.8 mm TL (19.4 mm), and 13.8 mm TL (12.0 mm), respectively. Ossification of the anal and dorsal pterygiophores initially occurred by 12.6 mm TL (10.9 mm) and 14.3 mm TL (12.2 mm), and was completed by 21.4 mm TL (17.5 mm) and 19.3 mm TL (15.9 mm), respectively. Squamation started at three centers of differentiation: the middle region of the trunk, the anterior of the caudal peduncle, and on the caudal peduncle at 23.8 mm TL (19.4 mm). The body was covered with scales, except the snout, at 57.2-60.2 mm TL (SL 47.1-49.2 mm).

Keywords

References

  1. Baek H-J, An C-M and Kim H-B. 2001. Biosynthesis of C21-steroids in spotted sea bass (Lateolabrax maculatus) ovaries. J Korean Fish Soc 34, 638-642.
  2. Emery AR. 1973. Ecology and functional osteology damselfish (Pisces; Pomacentridae) at Alligator Reef, Florida Keys. Bull Mar Sci 23, 649-770.
  3. Faustino M and Power DM. 1999. Development of the pectoral, pelvic, dorsal and anal fins in cultured sea bream. J Fish Biol 54, 1094-1110. https://doi.org/10.1111/j.1095-8649.1999.tb00860.x
  4. Fritzsche A and Johnson GD. 1980. Early osteological development of white perch and striped bass with emphasis on identification of their larvae. American Fish Soc 109, 387-406. https://doi.org/10.1577/1548-8659(1980)109<387:EODOWP>2.0.CO;2
  5. Fujita K. 1971. Early development of the squamation in Tilapia sparrmani. Japan J Ichthyol 18, 90-93.
  6. Fukuhara O and Ito K. 1987. On the formation of the fins and squamation in the Japanese parrot fish, Oplegnathus fasciatus reared in the laboratory. Bull Nansei Reg Fish Lab, 9-17.
  7. Fukuhara O and Fushimi T. 1981. Observations of morphology and squamation in Evynnis japonica Tanaka (Sparidae) reared in the laboratory. Bull Nansei Reg Fish Reg Lab, 1-8.
  8. Fukuhara O and Fushimi T. 1982. Development of fins and squamation in the percichthyid fish, Lateolabrax japonicas. Japan J Ichthyol 29, 173-178.
  9. Fukuhara O and Fushimi T. 1984. Squamation of larval greenling Hexagrammos otakii (Pisces: Hexagrammidae) reared in the laboratory. Bull Japan Soc Sci Fish 50, 759-761. https://doi.org/10.2331/suisan.50.759
  10. Fukuhara O. 1976. Morphological studies of larva of red sea bream. II. Early development squamation. Bull Nansei Reg Fish Res Lab, 13-18.
  11. Fukuhara O. 1977. Some morphological observation on larvae and juveniles of the kurodai, Mylio macrocephalus (Sparidae, Teleostei) reared in the laboratory. Bull Nansei Reg Fish Res Lab, 1-16.
  12. Fukuhara O. 1992. Study on the development of functional morphology and behavior of the larvae of eight commercially valuable teleost fishes. Contr Fish Res Jpn Sea Block 25, 1-122.
  13. Han K-H, Cho J-K, Lee S-H, Hwang S-Y, Yoon S-M, Seo W-I and Kim C-C. 2005. Osteological development of the larvae and juveniles of Takifugu pardalis (Teleostei: Tetraodontodae). Korean J Ichthyol 17, 29-35.
  14. Han K-H, Lim S-K, Kim K-S, Kim C-W and Yoo D-J. 2001. Osteological development of the larvae and juveniles of Sebastiscus tertius (Barsukov et Chen) in Korea. Korean J Ichthyol 13, 63-68.
  15. Johnson GD. 1984. Percoidei: development and relationship. In: Moser HG, Richards WJ, Cohen DM, Fahay MP, AW Kendall, SL Richardson (eds). Ontogeny and systematics of fishes. American Society of Ichthyologists and Herpetologists, special publication no 1, Allen Lawrence KS, 464-498.
  16. Kawamura K and Hosoya K. 1991. A modified double staining technique for making a transparent fish-skeletal specimen. Bull Nat'l Res Inst Aquaculture 20, 11-18.
  17. Kendall AW, Ahlstrom EH and Moser HG. 1984. Early life history stages of fishes and their characters. In: Moser HG, Richards WJ, Cohen DM, Fahay MP, Kendall AW, Richardson SL (eds). Ontogeny and systematics of fishes. American Society of Ichthyologists and Herpetologists, special publication no 1. Allen Lawrence KS, 11-12.
  18. Kim CH, Jun JC and Kim SU. 1998. Early life history of Korean temperate sea bass Lateolabrax sp. (Pisces: Moronidae). Bull Net Fish Res Dev Agency 54, 79-85.
  19. Kim J-W, Lee W-K, Yang S-W, Jeong K-S, Cho Y-C, Rho Y-G, Bang I-C, Kim K-S, Lim S-K, Yoo M-S and Kwon H-B. 1999. Immunohistochemical identification of the two froms of gonadotripin releasing hormones (sGnRH, cGnRH-II) in spotted sea bass (Lateolabrax sp.) brain. J Korean Fish Soc 32, 266-270.
  20. Kim YU, Han K-H and Kang C-B. 1992. Morphological and skeletal development of larvae and juveniles of Entomacrodus stellifer (Herre). Korean J Ichthyol 4, 31-43.
  21. Kim YU, Han K-H, Kang C-B, Kim JK and Byun S-K. 1997. The early life history of the rockfish, Sebastiscus marmoratus 2. Morphology and skeletal development of larvae and juvenile. Korean J Ichthyol 9, 186-194.
  22. Kim YU, Myoung J-G, Kim Y-S, Han K-H, Kang C-B and Kim J-G. 2001. The marines fishes of Korea. Hanguel, Busan, Korea, 382.
  23. Kimura S and Kiriyama T. 1993. Development of eggs, larvae and juveniles of the labrid fish, Halichoeres poecilopterus, reared in the laboratory. Japan J Ichthyol 39, 371-377.
  24. Koumoundouros G, Gagliardi F, Divanach P, Boglione C, Cataudella S and Kentouri M. 1997a. Normal and abnormal osteological development of caudal fin in Sparus aurata L. fry. Aquaculture 149, 215-226. https://doi.org/10.1016/S0044-8486(96)01443-3
  25. Koumoundouros G, Oran G, Divanach P, Stefanakis S and Kentouri M. 1997b. The opercular complex deformity in intensive gilthead sea bream (Spartus aurata L.) larviculture. Moment of apparition and description. Aquaculture 156, 165-177. https://doi.org/10.1016/S0044-8486(97)89294-0
  26. Koumoundouros G, Sfakianakis DG, Maingot E, Divanach P and Kentouri M. 2001a. Osteological development of the vertebral column and of the fins in Diplodus sargus (Teleostei: Perciformes: Sparidae). Mar Bio 139, 853-862. https://doi.org/10.1007/s002270100645
  27. Koumoundouros G, Divanach P and Kentouri M. 1999. Osteological development of the vertebral column and of the caudal complex in Dentex dentex. J Fish Bio 54, 424-436.
  28. Koumoundouros G, Divanach P and Kentouri M. 2001b. Osteological development of Dentex dentex (Osteichthyes: Sparidae): dorsal, anal, paired fins and squamation. Mar Bio1 38, 399-406. https://doi.org/10.1007/s002270000460
  29. Liu C-H. 2001. Early osteological development of the yellow tail Seriola dumerili (Pisces: Carangidae). Zool Stud 40, 289-298.
  30. Liu J-X, Gao T-X, Yokogawa K and Zhang Y-P. 2006. Differential population structuring and demographic history of two closely related fish species, Japanese sea bass (Lateolabrax japonicas) and spotted sea bass (Lateolabrax maculatus) in Northwestern Pacific. Mol Phylogenet Evol 39, 799-811. https://doi.org/10.1016/j.ympev.2006.01.009
  31. Matsuoka M. 1985. Osteological development in the red sea bream, Pagrus major. Japanese J Ichthyol 32, 35-51.
  32. Mook D. 1977. Larval and osteological development of the sheepshead, Archosargus probatocephalus (Pisces: Sparidae). Copeia 1977(1), 126-133. https://doi.org/10.2307/1443514
  33. Myoung J-G, Park C-W, Kim M-S, Kim J-M, Kang C-B and Kim YU. 1997. Morphological changes during starvation in early development stages of spotted sea bass, Lateolabrax sp. I. Post-larval stage. Korean J Ichthyol 9, 15-21.
  34. Nakayama K, Kinoshita I, Seikai T, Nakabo T and Tanaka M. 1996. Morphological comparisons during early stage rearing of Chinese and Japanese forms of the temperate bass, Lateolabrax japonicas .Japan J Ichthyol 43, 13-20.
  35. Okiyama M. 1988. An Atlas of the Early State Fishes in Japan. Tokai Univ. Press. 1157pp.
  36. Ozawa T. 1976. Early life history of the gonostomatid fish, Pollichtys mauli in the oceanic region off southern. Japan J Ichthyol 23, 43-54.
  37. Park E-H and Lee S-H. 1988. Scale growth and squamation chronology for the laboratory-reared Hermaphroditic fish Rivulus marmoratus (Cyprinodontidae). Japan J Ichthyol 34, 476-482.
  38. Park J-Y, Kim K-K and Kim Y. 1996. Genetic characterization of two types of sea bass, Lateolabrax japonicas in Korea by isozyme analysis. J Aquaculture 9, 437-445.
  39. Park YS and Kim YU. 1987. Studies on the larvae and juveniles of flying fish, Prognichthysa goo (Temminck and Schlegel) (Pisces, Exocoetidae) .II. Osteological development of larvae and juveniles. Bull Korean Fish Soc 20, 447-456.
  40. Potthoff T, Kelley S and Collins LA. 1988. Osteological development of the red snapper, Lutjanu scampechanus (Lutjanidae). Bull Mar Sci 43, 1-40.
  41. Pottoff T and Kelly S. 1982. Development of the vertebral column, fins and fin supports, branchiostegal rays, and squamation in the swordfish, Xiphias gladius. Fish Bull 80, 161-186.
  42. Seikai T. 1980. Early development of squamation in relation to color anomalies in hatchery-reared flounder, Paralichthys olivaceus .Japan J Ichthyol 27, 249-254.
  43. Sfakianakis DG, Doxa CK, Kouttouki S, Koumoundouros G, Maingot E, Divanach P and Kentouri M. 2005. Osteological development of the vertebral column and of the fins in Diplodus puntazzo (Cetti, 1777). Auqaculture 250, 36-46. https://doi.org/10.1016/j.aquaculture.2005.03.042
  44. Sfakianakis DG, Koumoundouros G, Divanach P and Kentouri M. 2004. Osteological development of the vertebral column and of the fins in Pagellus erythrinus (L. 1758). Temperature effedt on the developmental plasticity and morpho-anatomical abnormalities. Auqaculture 232, 407-424. https://doi.org/10.1016/j.aquaculture.2003.08.014
  45. Sire JY and Arnulf I. 1990. The development of squamation in four teleostean fishes with a survey of the literature. Japan J Ichthyol 37, 133-143.
  46. Vandewalle P, Gluckmann I, Baras E, Huriaux F and Focant B. 1997. Postembryonic development of the cephalic region in Heterobranchus longifilis. J Fish Bio 50, 227-253.
  47. Wagemans F and Vandewalle P. 1999. Development of the cartilaginous skull in Solea solea: trends on Pleuronectiforms. Ann Sci Nat 1, 39-52.
  48. Yokogawa K and Tajima T. 1996. Morphological and genetic characters of artificially propagated sea bass in Taiwan. Fisheries Sci 62, 361-366. https://doi.org/10.2331/fishsci.62.361
  49. Yokogawa K and Seki S. 1995. Morphological and genetic difference between Japanese and Chinese sea bass of the genus Lateolabrax. Japan J Ichthyol 41, 437-445.

Cited by

  1. Morphology and evolution of bioluminescent organs in the glowbellies (Percomorpha: Acropomatidae) with comments on the taxonomy and phylogeny of Acropomatiformes pp.03622525, 2018, https://doi.org/10.1002/jmor.20894