Literature DB >> 19422819

Development of zebrafish swimbladder: The requirement of Hedgehog signaling in specification and organization of the three tissue layers.

Cecilia Lanny Winata1, Svetlana Korzh, Igor Kondrychyn, Weiling Zheng, Vladimir Korzh, Zhiyuan Gong.   

Abstract

The swimbladder is a hydrostatic organ in fish postulated as a homolog of the tetrapod lung. While lung development has been well studied, the molecular mechanism of swimbladder development is essentially uncharacterized. In the present study, swimbladder development in zebrafish was analyzed by using several molecular markers: hb9 (epithelium), fgf10a and acta2 (mesenchyme), and anxa5 (mesothelium), as well as in vivo through enhancer trap transgenic lines Et(krt4:EGFP)(sq33-2) and Et(krt4:EGFP)(sqet3) that showed strong EGFP expression in the swimbladder epithelium and outer mesothelium respectively. We defined three phases of swimbladder development: epithelial budding between 36 and 48 hpf, growth with the formation of two additional mesodermal layers up to 4.5 dpf, and inflation of posterior and anterior chambers at 4.5 and 21 dpf respectively. Similar to those in early lung development, conserved expression of Hedgehog (Hh) genes, shha and ihha, in the epithelia, and Hh receptor genes, ptc1 and ptc2, as well as fgf10a in mesenchyme was observed. By analyzing several mutants affecting Hh signaling and Ihha morphants, we demonstrated an essential role of Hh signaling in swimbladder development. Furthermore, time-specific Hh inhibition by cyclopamine revealed different requirements of Hh signaling in the formation and organization of all three tissue layers of swimbladder.

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Year:  2009        PMID: 19422819     DOI: 10.1016/j.ydbio.2009.04.035

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  60 in total

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2.  Effect of Thyroperoxidase and Deiodinase Inhibition on Anterior Swim Bladder Inflation in the Zebrafish.

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4.  Using Zebrafish Models of Human Influenza A Virus Infections to Screen Antiviral Drugs and Characterize Host Immune Cell Responses.

Authors:  Con Sullivan; Denise Jurcyzszak; Michelle F Goody; Kristin A Gabor; Jacob R Longfellow; Paul J Millard; Carol H Kim
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5.  Ahr2-dependence of PCB126 effects on the swim bladder in relation to expression of CYP1 and cox-2 genes in developing zebrafish.

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6.  Dioxin inhibition of swim bladder development in zebrafish: is it secondary to heart failure?

Authors:  Monica S Yue; Richard E Peterson; Warren Heideman
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7.  Modeling mucosal candidiasis in larval zebrafish by swimbladder injection.

Authors:  Remi L Gratacap; Audrey C Bergeron; Robert T Wheeler
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8.  Evolutionarily conserved Tbx5-Wnt2/2b pathway orchestrates cardiopulmonary development.

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9.  Remobilization of Tol2 transposons in Xenopus tropicalis.

Authors:  Donald A Yergeau; Clair M Kelley; Emin Kuliyev; Haiqing Zhu; Amy K Sater; Dan E Wells; Paul E Mead
Journal:  BMC Dev Biol       Date:  2010-01-22       Impact factor: 1.978

10.  The role of vasculature and blood circulation in zebrafish swimbladder development.

Authors:  Cecilia Lanny Winata; Svetlana Korzh; Igor Kondrychyn; Vladimir Korzh; Zhiyuan Gong
Journal:  BMC Dev Biol       Date:  2010-01-14       Impact factor: 1.978

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