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Ooplasmic Segregation in the Zebrafish Zygote and Early Embryo: Pattern of Ooplasmic Movements and Transport Pathways

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2010-05-24
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Fuentes, Ricardo
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Ooplasmic Segregation in the Zebrafish Zygote and Early Embryo: Pattern of Ooplasmic Movements and Transport Pathways
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Author
  • Fuentes, Ricardo;
  • Fernández, Juan;
Abstract
Patterns of cytoplasmic movements and organization of transport pathways were examined in live or fixed zygotes and early zebrafish embryos using a variety of techniques. The zygote blastodisc grows by accumulation of ooplasm, transported to the animal pole from distinct sectors of ecto- and endoplasm at different speeds and developmental periods, using specific pathways or streamers. Slow transport (5 mm/ min) occurs during the first interphase along short streamers, whereas fast transport (9.6–40 mm/min) takes place during the first cleavage division along axial and meridional streamers. Interconnections between streamers allow cargoes to change their speed and final destination. A similar sequence of events occurs during the following divisions. A complex network of microtubules and actin filaments in the endo- and ectoplasm appears to be involved in the transport of inclusions and mRNAs. Actin-dependent intermittent pulsations provoked high-speed back-and-forth movements of cytoplasm that may contribute to redistribution of organelles and maternal determinants.
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Artículo de publicación ISI.
Patrocinador
Grant sponsor: Fondecyt; Grant number: Fondecyt 1030879 (2003–2006).
Identifier
URI: https://repositorio.uchile.cl/handle/2250/119257
ISSN: 1058-8388
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DEVELOPMENTAL DYNAMICS, Volume: 239, Issue: 8, Pages: 2172-2189, 2010
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