975
Views
0
CrossRef citations to date
0
Altmetric
Articles

Embryonic development of the saccular sensory epithelium in relation to otolith growth in the inner ear of the silver carp, Hypophthalmichthys molitrix (Valenciennes, 1844) (Teleostei: Cyprinidae): light and electron microscopic study

Pages 183-194 | Received 13 Apr 2015, Accepted 18 Apr 2016, Published online: 16 May 2016

References

  • Bang PI, Sewell WF, Malicki JJ. 2001. Morphology and cell type heterogeneities of the inner ear epithelia in adult and juvenile zebrafish (Danio rerio). The Journal of Comparative Neurology 438:173–190. doi:10.1002/(ISSN)1096-9861.
  • Becerra M, Anadón R. 1993. Development of the inner ear of the brown trout (Salmo trutta fario): II. Cytodifferentiation and innervation of sensory cells. Journal of Morphology 216:241–257. doi:10.1002/jmor.v216:3.
  • Brothers EB. 1984. Otolith studies on early life history of fishes. In: La Jolla CA, editor. Ontogeny and systematic of fishes. Special publication No. 1. American Society of Ichthyologists and Herpetologists. pp. 50–57.
  • Buran BN, Deng X, Popper AN. 2005. Structural variation in the inner ears of four deep-sea elopomorph fishes. Journal of Morphology 265:215–225. doi:10.1002/(ISSN)1097-4687.
  • Campana SE, Neilson JD. 1985. Microstructure of fish otoliths. Canadian Journal of Fisheries and Aquatic Sciences 42:1014–1032. doi:10.1139/f85-127.
  • Chandler JP. 1984. Light and electron microscopic studies of the basilar papilla in the duck, Anas platyrhynchos. II. Embryonic development. The Journal of Comparative Neurology 222:523–542. doi:10.1002/(ISSN)1096-9861.
  • Coombs S, Popper AN. 1982. Structure and function of the auditory system in the clown knife fish, Notopterus chitala. Journal of Experimental Biology 97:225–239.
  • Dale T. 1976. The labyrinthine mechanoreceptor organs of the cod Gadus morhua (Teleostei: Gadidae). Norwegian Journal of Zoology 24:85–128.
  • Degens ET, Deuser WC, Haedrich RL. 1969. Molecular structure and composition of fish otoliths. Marine Biology 2:105–113. doi:10.1007/BF00347005.
  • Deng X, Wagner HJ, Popper AN. 2013. Interspecific variations of inner ear structure in the deep-sea fish family melamphaidae. The Anatomical Record 296:1064–1082. doi:10.1002/ar.v296.7.
  • Dunkelberger DG, Dean JM, Watabe N. 1980. The ultrastructure of the otolithic membrane and otolith in the juvenile mummichog, Fundulus heteroclitus. Journal of Morphology 163:367–377. doi:10.1002/(ISSN)1097-4687.
  • Fay RR, Edds-Walton PL. 2008. Structures and functions of the auditory nervous system of fishes. In: Webb JF, Fay RR, Popper AN, editors. Fish bioacoustic. New York: Springer. pp. 49–97.
  • Fay RR, Popper AN. 1980. Structure and function in teleost auditory system. In: Popper AN, Fay RR, editors. Comparative studies of hearing in vertebrates. New York: Springer-Verlag. pp. 1–42.
  • Fritzsch B, Beisel KW, Jones K, Fariñas I, Maklad A, Lee J, Reichardt LF. 2002. Development and evolution of inner ear sensory epithelia and their innervation. Journal of Neurobiology 53:143–156. doi:10.1002/neu.v53:2.
  • Haddon CM, Lewis JM. 1996. Early ear development in the embryo of the Zebrafish, Danio rerio. The Journal of Comparative Neurology 365:113–128. doi:10.1002/(ISSN)1096-9861.
  • Harada Y. 1972. Surface view of the frog vestibular organ with the scanning electron microscope. Acta Oto-Laryngologica (Stokh.) 73:316–322. doi:10.3109/00016487209138947.
  • Hertwig I, Schneider H. 1999. Comparative light and electron microscopic study of the auditory organs of two species of fishes (Pisces): Hyphessobrycon simulans (Ostariophysi) and Poecilia reticulata (Acanthopterygii). European Journal of Morphology 37:17–28. doi:10.1076/ejom.37.1.0017.
  • Hudspeth AJ. 1983. Mechano-electrical transduction by hair cells in the acousticolateralis sensory system. Annual Review of Neuroscience 6:187–215. doi:10.1146/annurev.ne.06.030183.001155.
  • Jenkins DB. 1977. A light microscopic study of the saccule and lagena in certain catfishes. American Journal of Anatomy 150:605–629. doi:10.1002/(ISSN)1553-0795.
  • Kawamura G. 1984. The sense organs and behavior of milkfish fry in relation to collection techniques. In: Juario JV, Ferraris RP, Beitez LV, editors. Advance in milkfish biology and culture. Manilla: Island Publication House. pp. 69–85.
  • Kawamura G, Ishida K. 1985. Changes in sense organ morphology and behaviour with growth in the flounder Paralichthys olivaceus. Bulletin of the Japanese Society of Scientific Fisheries 51:155–165. doi:10.2331/suisan.51.155.
  • Ladich F, Popper AN. 2001. Comparison of the inner ear ultrastructure between teleost fishes using different channels for communication. Hearing Research 154:62–72. doi:10.1016/S0378-5955(01)00217-9.
  • Landmann L. 1972. Bau und ontogenese des vestibularen system bei Lacerta sicula. Bericht Über Die Verhandlungen Der Naturforschenden Gesellschaft in Basel 82:1–53.
  • Liang J, Burgess SM. 2009. Gross and fine dissection of the inner ear sensory epithelia in adult zebrafish (Danio rerio). Journal of Visualized Experiments 27(pii):1211.
  • Lombarte A, Fortuño JM. 1992. Differences in morphological features of the sacculus of the inner ear of two hakes (Merluccius capensis and M. paradoxus, gadiformes) inhabits from different depth of sea. Journal of Morphology 214:97–107. doi:10.1002/jmor.v214:1.
  • Lovell JM, Findlay MM, Harper GM, Moate RM. 2006. The inner ear ultrastructure from the paddlefish (Polyodon spathula) using transmission electron microscopy. Journal of Microscopy 222:36–41. doi:10.1111/jmi.2006.222.issue-1.
  • Lu Z, Popper AN. 2001. Neural response directionality correlates of hair cell orientation in a teleost fish. Journal of Comparative Physiology A: Sensory, Neural, and Behavioral Physiology 187:453–465. doi:10.1007/s003590100218.
  • Marco J, Sánchez-Fernández JM, Rivera-Pomar JM. 1971. Ultrastructure of the otoliths and otolithic membrane of the macula utriculi in the guinea pig. Acta Oto-Laryngologica (Stokh.) 71:1–8. doi:10.3109/00016487109125326.
  • Morales-Nin B. 1987. Ultrastructure of the organic and inorganic constituents of the otoliths of the sea bass. In: Summerfelt RC, Hall GE, editors. The age and growth of fish. Ames, IA: Iowa State University Press. pp. 331–343.
  • Mugiya Y. 1974. Calcium-45 behavior at the level of the otolithic organs of rainbow trout. Bulletin of The Japanese Society of Scientific Fisheries 40:457–463. doi:10.2331/suisan.40.457.
  • Neugebauer D-C, Thurm U. 1984. Intra-and extracellular membrane connections in stereovilli from fish inner ear. An electron microscopic study. Verhandlungen der Deutschen Zoologischen Gesellschaft 77:300–313.
  • Noro S, Yamamoto N, Ishikawa Y, Ito H, Ijiri K. 2007. Studies on the morphology of the inner ear and semicircular canal end organ projections of ha. Fish Biology Journal Medaka 11:31–41.
  • Platt C. 1983. The peripheral vestibular system of fishes. In: Northcutt RG, Davis RE, editors. Fish neurobiology. Ann Arbor: University of Michigan Press. pp. 89–123.
  • Platt CT, Popper AN. 1984. Variations in lengths of ciliary bundles on hair cells along the macula of the sacculus in two species of teleost fishes. Scanning Electron Microscopy IV:1915–1924.
  • Popper AN. 1981. Comparative scanning electron microscopic investigations of the sensory epithelia in the teleost sacculus and lagena. The Journal of Comparative Neurology 200:357–374. doi:10.1002/(ISSN)1096-9861.
  • Popper AN, Fay RR. 2011. Rethinking sound detection by fishes. Hearing Research 273:25–36. doi:10.1016/j.heares.2009.12.023.
  • Popper AN, Fay RR, Platt C, Sand O. 2003. Sound detection mechanisms and capabilities of teleost fishes. In: Collin SP, Marshall NJ, editors. Sensory processing in aquatic environments. New York: Springer. pp. 3–38.
  • Popper AN, Saidel WM, Chang JS. 1993. Two types of sensory hair cell in the saccule of a teleost fish. Hearing Research 64:211–216. doi:10.1016/0378-5955(93)90008-O.
  • Radtke RL, Dean JM. 1982. Increment formation in the otoliths of embryos, larvae, and juveniles of the mummichog, Fundulus heteroclitus. Fisheries Bulletin 80:201–215.
  • Ramcharitar JU, Deng X, Ketten D, Popper AN. 2004. Form and function in the unique inner ear of a teleost: The silver perch (Bairdiella chrysoura). The Journal of Comparative Neurology 475:531–539. doi:10.1002/(ISSN)1096-9861.
  • Raymond J. 1987. In vitro differentiation of mouse embryo statoacoustic ganglion and sensory epithelium. Hearing Research 28:45–56. doi:10.1016/0378-5955(87)90152-3.
  • Robenson DG, Ehlers U, Kerkin R, Hermenn B, Meyer F, Schurman FW. 1987. Methods of preparation for electron microscopy. Germany: Springer.
  • Saitoh S, Yamada J. 1989. Ultrastructure of the saccular epithelium and the otolithic membrane in relation to otolith growth in tilapia, Oreochromis niloticus (Teleostei: Cichlidae). Transactions of the American Microscopical Society 108:223–238. doi:10.2307/3226341.
  • Salamat MS, Ross MD, Peacor DR. 1980. Otoconial formation in the fetal rat. Annals of Otology, Rhinology & Laryngology 89:229–238. doi:10.1177/000348948008900308.
  • Salem MA, Al-Jahdali MO. 2006. Development, structure and function of the sense organs in the brownmarbled grouper Epinephelus fuscoguttatus (Teleostei: Serranidae). Journal of the Egyptian Society of Biotechnoloy and Environmental Sciences 8:95–138.
  • Salem MA, Omura Y. 1998a. Embryonic development of the inner ear and otolith of the rainbow trout Oncorhynchus mykiss. Archives of Histology and Cytology 61:179–187. doi:10.1679/aohc.61.179.
  • Salem MA, Omura Y. 1998b. Light and electron microscopic studies on the development of the inner ear and otolith of the ayu Plecoglossus altivelis. Fisheries Science 64:259–264.
  • Salem MA, Zaghloul MS. 2001. Structure and development of the saccular sensory epithelium in relation to otolith growth in the perch Perca fluviatilis (Teleostei). Egyptian Journal of Biology 3:1–12.
  • Saunders JC, Dear SP. 1983. Comparative morphology of stereocilia. In: Fay RR, Gourevitch G, editors. Hearing and other senses. Groton: Amphora Press, Conn. pp. 175–198.
  • Schulz-Mirbach T, Ladich F, Riesch R, Plath M. 2010. Otolith morphology and hearing abilities in cave and surface-dwelling ecotypes of the Atlantic molly, Poecilia mexicana (Teleostei: Poeciliidae). Hearing Research 267:137–148. doi:10.1016/j.heares.2010.04.001.
  • Schulz-Mirbach T, Martin H, Plath M. 2011. Inner ear morphology in the Atlantic molly, Poecilia mexicana- first detailed microanatomical study of the inner ear of a cyprinodontiform species. PLoS One 6:102–115. doi:10.1371/journal.pone.0027734.
  • Sokolowski BHA, Popper AN. 1987. Gross and ultrastructural development of the saccule of the toadfish, Opsanus tau. Journal of Morphology 194:323–348. doi:10.1002/jmor.1051940311.
  • Song J, Mathieu A, Soper RF, Popper AN. 2006. Structure of the inner ear of bluefin tuna Thunnus thynnus. Journal of Fish Biology 68:1767–1781. doi:10.1111/jfb.2006.68.issue-6.
  • Tanimoto M, Ota Y, Inoue M, Oda Y. 2011. Origin of inner ear hair cells: Morphological and functional differentiation from ciliary cells into hair cells in zebrafish inner ear. Journal of Neuroscience 31:3784–3794. doi:10.1523/JNEUROSCI.5554-10.2011.
  • Tracy HC. 1959. Stages in the development of the anatomy of motility of the toadfish (Opsanus tau). The Journal of Comparative Neurology 111:27–81. doi:10.1002/(ISSN)1096-9861.
  • Villy F. 1890. The development of the ear and accessory organs in the common frog. Quarterly Journal of Microscopical Science 30:523–550.
  • Waterman RE, Bell DH. 1984. Epithelial fusion during early semicircular canal formation in the embryonic zebrafish, Brachydanio rerio. The Anatomical Record 210:101–114. doi:10.1002/(ISSN)1097-0185.
  • Whitfield TT, Riley BB, Chiang MY, Phillips B. 2002. Development of the zebrafish inner ear. Developmental Dynamics 223:427–458. doi:10.1002/dvdy.10073.
  • Zhang Z. 1992. Relationship of saccular ultrastructure to otolith growth in the teleost Oreochromis niloticus. Journal of Morphology 212:99–107. doi:10.1002/(ISSN)1097-4687.
  • Zhang Z, Runham NW. 1992. Initial development of Oreochromis niloticus (Teleostei: Cichlidae) otolith. Journal of Zoology 227:465–478. doi:10.1111/jzo.1992.227.issue-3.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.