Literature DB >> 19035349

Spatiotemporal features of neurogenesis in the retina of medaka, Oryzias latipes.

Satish S Kitambi1, Jarema J Malicki.   

Abstract

The vertebrate retina is very well conserved in evolution. Its structure and functional features are very similar in phyla as different as primates and teleost fish. Here, we describe the spatiotemporal characteristics of neurogenesis in the retina of a teleost, medaka, and compare them with other species, primarily the zebrafish. Several intriguing differences are observed between medaka and zebrafish. For example, photoreceptor differentiation in the medaka retina starts independently in two different areas, and at more advanced stages of differentiation, medaka and zebrafish retinae display obviously different patterns of the photoreceptor cell mosaic. Medaka and zebrafish evolutionary lineages are thought to have separated from each other 110 million years ago, and so the differences between these species are not unexpected, and may be exploited to gain insight into the architecture of developmental pathways. Importantly, this work highlights the benefits of using multiple teleost models in parallel to understand a developmental process. (c) 2008 Wiley-Liss, Inc.

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Year:  2008        PMID: 19035349      PMCID: PMC2919814          DOI: 10.1002/dvdy.21797

Source DB:  PubMed          Journal:  Dev Dyn        ISSN: 1058-8388            Impact factor:   3.780


  71 in total

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Journal:  Mech Dev       Date:  2004-07       Impact factor: 1.882

2.  The ultraviolet opsin is the first opsin expressed during retinal development of salmonid fishes.

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Review 3.  The zebrafish genome in context: ohnologs gone missing.

Authors:  John H Postlethwait
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Journal:  Cell       Date:  2007-08-10       Impact factor: 41.582

Review 6.  Stages of normal development in the medaka Oryzias latipes.

Authors:  Takashi Iwamatsu
Journal:  Mech Dev       Date:  2004-07       Impact factor: 1.882

7.  Mutations affecting retinotectal axonal pathfinding in Medaka, Oryzias latipes.

Authors:  Hiroki Yoda; Yukihiro Hirose; Akihito Yasuoka; Takao Sasado; Chikako Morinaga; Tomonori Deguchi; Thorsten Henrich; Norimasa Iwanami; Tomomi Watanabe; Masakazu Osakada; Sanae Kunimatsu; Joachim Wittbrodt; Hiroshi Suwa; Katsutoshi Niwa; Yasuko Okamoto; Toshiyuki Yamanaka; Hisato Kondoh; Makoto Furutani-Seiki
Journal:  Mech Dev       Date:  2004-07       Impact factor: 1.882

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Journal:  PLoS Genet       Date:  2007-08-01       Impact factor: 5.917

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2.  Retinal histogenesis and cell differentiation in an elasmobranch species, the small-spotted catshark Scyliorhinus canicula.

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3.  Workshop report: The medaka model for comparative assessment of human disease mechanisms.

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4.  In situ labeling of transcription sites in marine medaka.

Authors:  Leo K Y So; Sarah K C Cheung; Hok L Ma; Xue P Chen; Shuk H Cheng; Yun W Lam
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5.  Retinal histogenesis in an altricial avian species, the zebra finch (Taeniopygia guttata, Vieillot 1817).

Authors:  Guadalupe Álvarez-Hernán; Elena Sánchez-Resino; Ismael Hernández-Núñez; Alfonso Marzal; Joaquín Rodríguez-León; Gervasio Martín-Partido; Javier Francisco-Morcillo
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6.  Chronotopographical distribution patterns of cell death and of lectin-positive macrophages/microglial cells during the visual system ontogeny of the small-spotted catshark Scyliorhinus canicula.

Authors:  Ruth Bejarano-Escobar; Manuel Blasco; Ana Carmen Durán; Gervasio Martín-Partido; Javier Francisco-Morcillo
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7.  Crb apical polarity proteins maintain zebrafish retinal cone mosaics via intercellular binding of their extracellular domains.

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9.  TGF-β Controls miR-181/ERK Regulatory Network during Retinal Axon Specification and Growth.

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Review 10.  Cell and small animal models for phenotypic drug discovery.

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  10 in total

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