Phenogenetics of cortical granule dynamics during zebrafish oocyte-to-embryo transition.

IF 4.6 2区 生物学 Q2 CELL BIOLOGY Frontiers in Cell and Developmental Biology Pub Date : 2025-01-30 eCollection Date: 2025-01-01 DOI:10.3389/fcell.2025.1514461
Priscila García-Castro, Isabella Giambó-Falian, Ingrid Carvacho, Ricardo Fuentes
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Abstract

Fertilization 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.

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斑马鱼卵细胞向胚胎转变过程中皮质颗粒动力学的表型遗传学。
受精是有性生殖的一个关键过程,它涉及到有能力的精子与成熟的卵母细胞融合形成受精卵。多精是指一个卵母细胞被多个精子受精,导致多倍体和胚胎致命性。哺乳动物和非哺乳动物的卵母细胞已经进化出了防止多精的机制,包括快速和缓慢的阻断。快速块包括精子融合后的膜去极化,暂时阻止额外的精子融合。这种缓慢的阻滞是由皮质颗粒(CG)胞吐引起的,涉及到蛋白质的释放,这些蛋白质修饰透明带形成永久屏障,避免额外的精子受精。有证据表明,未成熟的卵母细胞往往不能防止多精,这是由于细胞内钙增加受损、钙离子含量降低和CG迁移不完全所致。遗传变异在卵母细胞向胚胎转变过程中如何导致可观察到的表型(表型遗传学)的研究,已经确定了斑马鱼中涉及CG行为的几个母体效应基因。这些基因调节CG生物学的各个阶段,包括生物合成、成熟和胞吐。这些基因的突变破坏了这些过程,突出了母体基因对CG特性的控制。斑马鱼已经成为理解CG生物学中进化的遗传调控和分子机制的关键模型,为生育和早期胚胎发育提供了有价值的见解。
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来源期刊
Frontiers in Cell and Developmental Biology
Frontiers in Cell and Developmental Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
9.70
自引率
3.60%
发文量
2531
审稿时长
12 weeks
期刊介绍: Frontiers in Cell and Developmental Biology is a broad-scope, interdisciplinary open-access journal, focusing on the fundamental processes of life, led by Prof Amanda Fisher and supported by a geographically diverse, high-quality editorial board. The journal welcomes submissions on a wide spectrum of cell and developmental biology, covering intracellular and extracellular dynamics, with sections focusing on signaling, adhesion, migration, cell death and survival and membrane trafficking. Additionally, the journal offers sections dedicated to the cutting edge of fundamental and translational research in molecular medicine and stem cell biology. With a collaborative, rigorous and transparent peer-review, the journal produces the highest scientific quality in both fundamental and applied research, and advanced article level metrics measure the real-time impact and influence of each publication.
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