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Osteological Development of the Larvae and Juvenile in Konosirus punctatus

전어(Konosirus punctatus) 자치어 발육단계에 따른 골격발달과정

  • Ji-Hoon Seo (Department of Fisheries Sciences, Chonnam National University) ;
  • KwanSeok Kim (Department of Fisheries Sciences, Chonnam National University) ;
  • Jin Lee (Department of Fisheries Sciences, Chonnam National University) ;
  • Won-Jun Choi (Department of Fisheries Sciences, Chonnam National University) ;
  • Sang-Hun Cha (Department of Fisheries Sciences, Chonnam National University) ;
  • Tae-Sik Yu (Fisheries Science Institute, Chonnam National University) ;
  • Sung-Hun Lee (Department of Fishery, Marine, Industry, Tourism, and Leisure, Chonnam National University) ;
  • Kyeong-Ho Han (Department of Fisheries Sciences, Chonnam National University)
  • 서지훈 (전남대학교 수산과학과) ;
  • 김관석 (전남대학교 수산과학과) ;
  • 이진 (전남대학교 수산과학과) ;
  • 최원준 (전남대학교 수산과학과) ;
  • 차상훈 (전남대학교 수산과학과) ;
  • 유태식 (전남대학교 수산과학연구소) ;
  • 이성훈 (전남대학교 수산해양산업관광레저융합학과) ;
  • 한경호 (전남대학교 수산과학과)
  • Received : 2023.04.03
  • Accepted : 2023.05.15
  • Published : 2023.05.31

Abstract

Five days after hatching in Konosirus punctatus, the larvae were 5.86~6.21 mm (mean 5.96 mm) in TL and ossified parasphenoid, prefrontal, premaxillary, dentary. Sixteen days after hatching, the larvae were 9.66~10.18 mm (mean 9.96 mm) in TL and ossified prootic, opisthotic, ectopterygoid, and epihyal. Twenty-five days after hatching, the larvae were 11.02~12.64 mm (mean 11.03 mm) in TL and ossified supraclavicle, posttemporal, four actinost. Twenty-eight days after hatching, the larvae were 11.98~12.81 mm (mean 12.34 mm) in TL and ossified frontal, pterotic, epiotic, exoccipital, basioccipital, preorbital, maxillary, hyomadibular, preopercle, opercle, hypohyal. Thirty-six days after hatching, the larvae were 15.26~16.39 mm (mean 16.11 mm) in TL and ossified scapula. 37 days after hatching, the larvae were 15.33~16.87 mm (mean 16.25 mm) in TL and ossified ethmoid, nasal, parietal, supraoccipital, and suborbital. Forty-five days after hatching, the larvae were 20.01~21.83 mm (mean 21.14 mm) in TL, and the shoulder girdle was completed by coracoid formation. Forty-eight days after hatching, the larvae were 22.46~24.03 mm (mean 23.20 mm) in TL and ossified articular and subopercle. When the juvenile reached 27.11~34.09 mm (mean 30.11 mm) in TL (53 days after hatching) completed ossification of the cranium, vertebrae, pelvic girdle, shoulder girdle, caudal bone, and pterygiophore.

전어는 부화 후 5일째 평균전장 5.96 mm로 부설골, 전액골, 전상악골, 치골이 먼저 골화하였다. 부화 후 16일째 평균전장 9.96 mm로 전이골, 후이골, 외익상골, 상설골이 골화하였다. 부화 후 25일째 평균전장 11.03 mm로 상쇄골, 후측두골이 골화하기 시작하였으며, 4개의 사출골이 골화하였다. 부화 후 28일째 평균전장 12.34 mm로 액골, 익이골, 상이골, 외후두골, 기저후두골, 안전골, 주상악골, 설악골, 전새개골, 주새개골, 하설골이 골화하였다. 부화 후 36일째 평균전장 16.11 mm로 견갑골이 골화하였고, 부화 후 37일째 평균전장 16.25 mm로 사골, 비골, 노정골, 상후두골, 안하골이 골화하였다. 부화 후 45일째 평균전장 21.14 mm로 오혜골이 골화하여 견대부의 골화가 완성되었다. 부화 후 48일째 평균전장 23.20 mm로 관절골, 하새개골이 골화하였다. 부화 후 53일째 평균전장 30.11 mm로 서골, 구개골, 내익상골, 각골, 방골, 접속골, 인설골이 골화하면서 모든 골격의 골화가 완료되었다.

Keywords

References

  1. Choi, H.C., I.S. Han, Y.S. Suh and S.H. Huh. 2015. Feeding habits of larval Konosirus punctatus from the Nakdong River estuary, Korea. Korean J. Fish. Aquat. Sci., 48: 752-759. https://doi.org/10.5657/KFAS.2015.0752.
  2. Debiais-Thibaud, M., C.J. Metcalfe, J. Pollack, I. Germon and A.W. Thompson. 2020. The evolution of vertebrate skeletal development: perspectives from developmental biology and fossil record. J. Exp. Zool. B Mol. Dev. Evol., 334: 13-26.
  3. Han, K.H., D.Y. Kim, B.Y. Noh, S.H. Oh, Y.M. Kim, D.S. Jin and Y.U. Kim. 2000. Morphological and skeletal development of larvae and juveniles of the slender, Ilisha elongata (Bennett) (Teleostei: Clupeidae). Korean J. Ichthyol., 12: 230-235.
  4. Han, K.H., T.J. Park, D.S. Jin, D.J. Yoo and J.M. Park. 2017. Osteological development of the larvae and juvenile in Coreoperca herzi. Korean J. Ichthyol., 29: 32-40.
  5. Kim, K.S., K.H. Han, J.H. Lee, S.H. Lee, C.C. Kim, H.J. Ko and K.S. Jeong. 2007. Egg development and morphology of larva and juvenile of the Konoshiro Gizzard Shad, Konosirus punctatus. Dev. Reprod., 11: 127-135.
  6. Kim, Y.U. 1989. Introduction of ichthyolgoy. Taehwa Publishing, Busan, 270pp.
  7. Kim, Y.U., J.G. Myoung, Y.S. Kim, K.H. Han, C.B. Kang and J.G. Kim. 2001. The marines fishes of Korea. Hanguel, Busan, Korea, 382pp.
  8. Koumoundouros, G., D.G. Sfakianakis, E. Maingot, P. Divanach and M. Kentouri. 2001. Osteological development of the vertebral column and of the fins in Diplodus sargus (Teleostei: Perciformes: Sparidae). Mar. Biol., 139: 853-862. https://doi.org/10.1007/s002270100645
  9. Koumoundouros, G., F. Gagliardi, P. Divanach, C. Boglione, S. Cataudella and M. Kentouri. 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
  10. Koumoundouros, G., G. Oran, P. Divanach, S. Stefanakis and M. Kentouri. 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
  11. Liu, C.H. 2001. Early osteological development of the yellow tail Seriola dumerili (Pisces: Carangidae). Zool. Stud., 40: 289-298.
  12. Mabee, P.M. 2000. Developmental plasticity: bones and beyond. J. Exp. Zool., 288(1): 1-20. https://doi.org/10.1002/(SICI)1097-010X(20000415)288:1<1::AID-JEZ1>3.0.CO;2-7
  13. Matsuoka, M. 1997. Osteological development in the Japanese sardine, Sardinops melanostictus. Ichthyol. Res., 44(3): 275-295. https://doi.org/10.1007/BF02678707.
  14. Mook, D. 1977. Larval and osteological development of the sheepshead, Archosargus probatocephalus (Pisces: Sparidae). Copeia, 1: 126133. https://doi.org/10.2307/1443514.
  15. Mun, S.J., J.M. Park and K.H. Han. 2019. Osteological development of larvae and juvenile of Hemibarbus longirostris (Cypriniformes: Cyprinidae) from Korea. Korean J. Ichthyol., 31: 214-221. https://doi.org/10.35399/ISK.31.4.5.
  16. Myoung, S.H. and J.K. Kim. 2014. Genetic diversity and population structure of the gizzard shad, Konosirus punctatus(Clupeidae, Pisces), in Korean waters based on mitochondrial DNA control region sequences. Genes Genom., 36: 591-598. https://doi.org/10.1007/s13258-014-0197-6.
  17. Park, J.M., J.K. Cho, K.H. Han, N.R. Kim, H.K. Hwang, K.M. Kim, J.I. Myeong and M.H. Son. 2014. Early life history of the sevenband grouper, Epinephelus septemfasciatus from Korea. Dev. Reprod., 18: 13-23. https://doi.org/10.12717/DR.2014.18.1.013.
  18. Park, J.Y., C.G. Hong, J.K. Cho, M.H. Son, K.H. Han and J.M. Park. 2015. Early osteological development of the Larvae and Juveniles in Sevenband Grouper, Epinephelus septemfasciatus(Pisces: Serranidae). Korean J. Ichthyol., 27: 189-198.
  19. Park, K.J., S.S. Cha and S.H. Huh. 1996. Food organism of postlarval Shad (Konosirus punctatus) in Kwangyang Bay. J. Korean Fish. Soc., 29: 450-455.
  20. Potthoff, T. and J.A. Tellock. 1993. Osteological development of the snook, Centropomus undecimalis (Teleostei, Centropomidae). Bull. Mar. Sci., 52: 669716.
  21. Sfakianakis, D.G., G. Koumoundouros, P. Divanach and M. Kentouri. 2004. Osteological development of the vertebral column and of the fins in Pagellus erythrinus(L. 1758). Temperature effect on the developmental plasticity and morphoanatomical abnormalities. Aquaculture, 232: 407424. https://doi.org/10.1016/j.aquaculture.2003.08.014.
  22. Vandewalle, P., I. Gluckmann, E. Baras, F. Huriaux and B. Focant. 1997. Postembryonic development of the cephalic region in Heterobranchus longifilis. J. Fish Biol., 50: 227-253. https://doi.org/10.1111/j.1095-8649.1997.tb01355.x.
  23. Wagemans, F. and P. Vandewalle. 1999. Development of the cartilaginous skull in Solea solea: trends on Pleuronectiforms. Ann. Sci. Nat., Zool. Biol. Anim., 20: 39-52. https://doi.org/10.1016/S0003-4339(99)80007-0.
  24. Walker, M.B. and C.B. Kimmel. 2007. A two color acid free cartilage and bone stain for zebrafish larvae. Biotech. Histochem., 82: 23-28. https://doi.org/10.1080/10520290701333558.