首页> 外文期刊>Sexual development: genetics, molecular biology, evolution, endocrinology, embryology, and pathology of sex determination and differentiation >Analysis of sexually dimorphic expression of genes at early gonadogenesis of pejerrey Odontesthes bonariensis using a heterologous microarray.
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Analysis of sexually dimorphic expression of genes at early gonadogenesis of pejerrey Odontesthes bonariensis using a heterologous microarray.

机译:使用异源微阵列分析在pejerrey Odontesthes bonariensis早期性腺发育中的基因有性双态表达。

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The process of morphological development of a differentiated gonad from an undifferentiated primordium is a very important step of gonadogenesis. Studies on sexually dimorphic gene expression are important to increase our understanding of this process and to investigate how environmental factors such as temperature can regulate gonadal development. The aim of this study was to identify putative genes involved in sex differentiation in pejerrey (Odontesthes bonariensis) reared at male- and female-producing temperatures (MPT and FPT, respectively) using a microarray heterologous from the medaka (Oryzias latipes), a closely phylogenetic species. Genes related to numerous processes presented higher expression at MPT, including those involved in muscular contraction, metabolic pathways, developmental processes, and reproduction. Genes induced by FPT were classified under the gene ontology terms of response to stimulus, transport and proteolysis. From genes selected for validation, at MPT ndrg3 expression was observed in the somatic cells, whereas pen-2 was detected in germ cells in the caudal portion of the gonads, where no apoptotic signals were observed. Finally, hsp90 was highly expressed in somatic cells of the gonads at the FPT. The results suggest that the interplay of pro-apoptotic and anti-apoptotic genes is important during the masculinization process and for the prevention of sterility following exposure to warm temperatures.
机译:来自未分化原基的分化性腺的形态发育过程是性腺发生的非常重要的一步。研究性双态性基因表达对于增进我们对这一过程的理解以及调查环境因素(例如温度)如何调节性腺发育至关重要。这项研究的目的是使用近缘种(Medaka)(Oryzias latipes)的异源微阵列,鉴定在男性和女性生产温度(分别为MPT和FPT)饲养的佩杰雷(Odontesthes bonariensis)中性别分化的推定基因。系统发生种。与众多过程相关的基因在MPT上表达更高,包括那些参与肌肉收缩,代谢途径,发育过程和生殖的基因。 FPT诱导的基因根据对刺激,转运和蛋白水解反应的基因本体术语进行分类。从选择用于验证的基因中,在体细胞中观察到了MPT ndrg3表达,而在性腺尾部的生殖细胞中检测到了pen-2,其中未观察到凋亡信号。最后,hsp90在FPT时在性腺的体细胞中高表达。结果表明促凋亡和抗凋亡基因的相互作用在男性化过程中以及防止暴露于温暖温度后的无菌性方面很重要。

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