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dc.contributor.authorGarcía-Castro, Priscila
dc.contributor.authorGiambó-Falian, Isabella
dc.contributor.authorCarvacho, Ingrid
dc.contributor.authorFuentes, Ricardo
dc.date.accessioned2025-04-09T20:59:46Z
dc.date.available2025-04-09T20:59:46Z
dc.date.issued2025
dc.identifier.urihttp://repositorio.ucm.cl/handle/ucm/5941
dc.description.abstractFertilization is a critical process in sexual reproduction that involves the fusion of a capacitated sperm with a mature oocyte to form a zygote. Polyspermy, the fertilization of an oocyte by multiple sperm, leads to polyploidy and embryo lethality. Mammalian and non-mammalian oocytes have evolved mechanisms to prevent polyspermy, including fast and slow blocks. The fast block comprises membrane depolarization post-sperm fusion, temporarily preventing additional sperm fusion. The slow block, triggered by cortical granule (CG) exocytosis, involves the release of proteins that modify the zona pellucida to form a permanent barrier, avoiding the fertilization by additional sperm. The evidence shows that immature oocytes often fail to prevent polyspermy due to ineffective CG exocytosis, attributed to impaired intracellular calcium increases, lower content of this ion, and incomplete CG migration. The study of how genetic variations lead to observable phenotypes (phenogenetics) during the oocyte-to-embryo transition, have identified several maternal-effect genes in zebrafish involved in CG behavior. These genes regulate various stages of CG biology, including biosynthesis, maturation, and exocytosis. Mutations in these genes disrupt these processes, highlighting the maternal genetic control over CG properties. Zebrafish has emerged as a pivotal model for understanding the evolving genetic regulation and molecular mechanisms underlying CG biology, providing valuable insights into fertility and early embryonic development.es_CL
dc.language.isoenes_CL
dc.rightsAtribución-NoComercial-SinDerivadas 3.0 Chile*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/cl/*
dc.sourceFrontiers in Cell and Developmental Biology, 13, 1514461es_CL
dc.subjectFertilizationes_CL
dc.subjectZebrafishes_CL
dc.subjectCortical granule dynamicses_CL
dc.subjectOocyte maturationes_CL
dc.subjectPolyspermyes_CL
dc.titlePhenogenetics of cortical granule dynamics during zebrafish oocyte-to-embryo transitiones_CL
dc.typeArticlees_CL
dc.ucm.facultadFacultad de Medicinaes_CL
dc.ucm.indexacionScopuses_CL
dc.ucm.indexacionIsies_CL
dc.ucm.urifrontiersin.org/journals/cell-and-developmental-biology/articles/10.3389/fcell.2025.1514461/fulles_CL
dc.ucm.doidoi.org/10.3389/fcell.2025.1514461es_CL


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Atribución-NoComercial-SinDerivadas 3.0 Chile
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