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利用微阵列分析技术研究山羊早期卵泡发生过程中的基因表达

Gene Expression During Early Folliculogenesis in Goats Using Microarray Analysis.

作者信息

Magalhães-Padilha Deborah M, Geisler-Lee Jane, Wischral Aurea, Gastal Melba O, Fonseca Gabriela R, Eloy Ygor R G, Geisler Matthew, Figueiredo José Ricardo, Gastal Eduardo L

出版信息

Biol Reprod. 2013 Jul;89(1):19. doi: 10.1095/biolreprod.112.106096. Epub 2013 Jun 12.

Abstract

Understanding of gene expression and metabolic, biological and physiological pathways in ovarian follicular development can have a significant impact on the dynamics of follicular atresia or survival. In fact, some oocyte loss occurs during the transition from secondary to early tertiary follicles. This study aimed to understand, by microarray analysis, the temporal changes in transcriptional profiles of secondary and early antral (tertiary) follicles in caprine ovaries. Ovarian follicles were microdissected and pooled to extract total RNA. The RNA was cross hybridized with the bovine array. Among 23,987 bovine genes, a total of 14,323 genes were hybridized with goat mRNAs while 9,664 genes were not. Of all the hybridized genes, 2,466 were stage-specific, up- and down-regulated in the transition from secondary to early tertiary follicles. Gene expression profiles showed that three major metabolic pathways (lipid metabolism, cell death, and hematological system) were significantly differentiated between the two follicle stages. In conclusion, this study has identified important genes and pathways which may potentially be involved in the transition from secondary to early tertiary follicles in goats.

摘要

了解卵巢卵泡发育过程中的基因表达以及代谢、生物学和生理途径,可能会对卵泡闭锁或存活的动态过程产生重大影响。事实上,在从次级卵泡向早期三级卵泡转变的过程中会发生一些卵母细胞丢失的情况。本研究旨在通过微阵列分析了解山羊卵巢中次级卵泡和早期窦状(三级)卵泡转录谱的时间变化。对卵巢卵泡进行显微切割并汇集以提取总RNA。该RNA与牛基因芯片进行交叉杂交。在23,987个牛基因中,共有14,323个基因与山羊mRNA杂交,而9,664个基因未杂交。在所有杂交基因中,有2,466个是阶段特异性的,在从次级卵泡向早期三级卵泡转变过程中上调或下调。基因表达谱显示,在两个卵泡阶段之间,三种主要代谢途径(脂质代谢、细胞死亡和血液系统)存在显著差异。总之,本研究确定了可能参与山羊从次级卵泡向早期三级卵泡转变的重要基因和途径。

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