Agustina Pascual, Emiliano S Vilardo, Catalina Taibo, Julia Sabio Y García, Rolando Rivera Pomar
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引用次数: 6
Abstract
The morphology and physiology of the oogenesis have been well studied in the vector of Chagas disease Rhodnius prolixus. However, the molecular interactions that regulate the process of egg formation, key for the reproductive cycle of the vector, is still largely unknown. In order to understand the molecular and cellular basis of the oogenesis, we examined the function of the gene Bicaudal C (BicC) during oogenesis and early development of R. prolixus. We show that R. prolixus BicC (Rp-BicC) gene is expressed in the germarium, with cytoplasmic distribution, as well as in the follicular epithelium of the developing oocytes. RNAi silencing of Rp-BicC resulted in sterile females that lay few, small, non-viable eggs. The ovaries are reduced in size and show a disarray of the follicular epithelium. This indicates that Rp-BicC has a central role in the regulation of oogenesis. Although the follicular cells are able to form the chorion, the uptake of vitelline by the oocytes is compromised. We show evidence that the polarity of the follicular epithelium and the endocytic pathway, which are crucial for the proper yolk deposition, are affected. This study provides insights into the molecular mechanisms underlying oocyte development and show that Rp-BicC is important for de developmental of the egg and, therefore, a key player in the reproduction of this insect.
研究了恰加斯病病媒虫长毛Rhodnius的产卵形态学和生理特征。然而,调节卵子形成过程的分子相互作用,对载体的生殖周期至关重要,在很大程度上仍然是未知的。为了进一步了解毛毛猴卵发生的分子和细胞基础,我们研究了Bicaudal C (BicC)基因在毛毛猴卵发生和早期发育中的功能。结果表明,Rp-BicC基因不仅在卵母细胞的卵泡上皮中表达,而且在胚乳中也有表达,呈细胞质分布。RNAi沉默Rp-BicC导致雌性不育,产卵少,小,无活卵。卵巢缩小,滤泡上皮紊乱。这表明Rp-BicC在卵子发生的调控中起着核心作用。虽然卵泡细胞能够形成绒毛膜,但卵细胞对卵黄的摄取受到损害。我们证明卵泡上皮的极性和内吞途径对卵黄沉积至关重要,受到影响。这项研究提供了对卵母细胞发育的分子机制的见解,并表明Rp-BicC对卵的发育很重要,因此在这种昆虫的繁殖中起着关键作用。
期刊介绍:
Development Genes and Evolution publishes high-quality reports on all aspects of development biology and evolutionary biology. The journal reports on experimental and bioinformatics work at the systemic, cellular and molecular levels in the field of animal and plant systems, covering key aspects of the following topics:
Embryological and genetic analysis of model and non-model organisms
Genes and pattern formation in invertebrates, vertebrates and plants
Axial patterning, embryonic induction and fate maps
Cellular mechanisms of morphogenesis and organogenesis
Stem cells and regeneration
Functional genomics of developmental processes
Developmental diversity and evolution
Evolution of developmentally relevant genes
Phylogeny of animals and plants
Microevolution
Paleontology.