CSIRO Livestock Industries, Australian Animal Health Laboratory, Geelong, Victoria, Australia.
Biol Reprod. 2011 Jul;85(1):22-30. doi: 10.1095/biolreprod.110.088476. Epub 2011 Mar 9.
Tissue-specific patterns of microRNA (miRNA) expression contribute to organogenesis during embryonic development. Using the embryonic chicken gonads as a model for vertebrate gonadogenesis, we previously reported that miRNAs are expressed in a sexually dimorphic manner during gonadal sex differentiation. Being male biased, we hypothesised that up-regulation of microRNA 202* (MIR202*) is characteristic of testicular differentiation. To address this hypothesis, we used estrogen modulation to induce gonadal sex reversal in embryonic chicken gonads and analyzed changes in MIR202* expression. In ovo injection of estradiol-17beta at Embryonic Day 4.5 (E4.5) caused feminization of male gonads at E9.5 and reduced MIR202* expression to female levels. Female gonads treated at E3.5 with an aromatase inhibitor, which blocks estrogen synthesis, were masculinized by E9.5, and MIR202* expression was increased. Reduced MIR202* expression correlated with reduced expression of the testis-associated genes DMRT1 and SOX9, and up-regulation of ovary-associated genes FOXL2 and CYP19A1 (aromatase). Increased MIR202* expression correlated with down-regulation of FOXL2 and aromatase and up-regulation of DMRT1 and SOX9. These results confirm that up-regulation of MIR202* coincides with testicular differentiation in embryonic chicken gonads.
组织特异性 microRNA(miRNA)表达模式有助于胚胎发育过程中的器官发生。我们以前曾使用胚胎鸡性腺作为脊椎动物性腺发生的模型,报道了 miRNA 在性腺性别分化过程中以性二态的方式表达。由于雄性偏向性,我们假设 microRNA 202*(MIR202*)的上调是睾丸分化的特征。为了验证这一假设,我们使用雌激素调节来诱导胚胎鸡性腺中的性腺性别反转,并分析 MIR202表达的变化。在胚胎第 4.5 天(E4.5)向鸡胚中注射雌二醇-17β(E4.5)导致雄性性腺在 E9.5 时女性化,并将 MIR202表达降低到女性水平。在 E3.5 用芳香酶抑制剂处理的雌性性腺,该抑制剂阻断雌激素合成,在 E9.5 时被雄性化,并且 MIR202表达增加。MIR202表达减少与睾丸相关基因 DMRT1 和 SOX9 的表达减少相关,与卵巢相关基因 FOXL2 和 CYP19A1(芳香酶)的表达上调相关。MIR202表达增加与 FOXL2 和芳香酶的下调以及 DMRT1 和 SOX9 的上调相关。这些结果证实了 MIR202的上调与胚胎鸡性腺中的睾丸分化一致。