Centre for Advanced Research in Environmental Genomics, Department of Biology, University of Ottawa, 30 Marie Curie, Ottawa, Ontario, Canada.
Sex Dev. 2012;6(6):303-15. doi: 10.1159/000343783. Epub 2012 Nov 14.
Most anurans have no identified sex-markers; therefore, alternative methods for identification of early changes in sex ratios are required. In this study, Lithobates sylvaticus and Silurana tropicalis tadpoles were sampled at different developmental stages covering the entire process of sex differentiation. Three candidate genes known to be involved in sex differentiation in other vertebrate species were selected to develop a method to identify phenotypic sex in frogs: cytochrome p450 aromatase (cyp19), forkhead box L2 (foxl2) and the cytochrome 17-alpha-hydroxylase/17,20 lyase (cyp17). Cloning of these genes revealed nucleotide identity values ranging between 75-97% when compared to other amphibian species. Gene expression of cyp17,cyp19 and foxl2 in L. sylvaticus adult gonads and gonad-mesonephros complex (GMC) of tadpoles was analyzed by real-time RT-PCR. Results showed clear sexually dimorphic patterns in the expression of the 3 genes. Our analysis reveals that GMC gene expression levels of cyp19 alone can be used as a robust predictor of phenotypic sex in L. sylvaticus tadpoles. In addition, we validated this method measuring cyp19 mRNA levels in S. tropicalis GMCs. We propose measuring cyp19 as a tool to study the effects of chemical contaminants (including endocrine disrupting compounds) on amphibian gonadal development and sex ratios in the future.
大多数无尾两栖类动物没有明确的性别标记物;因此,需要替代方法来识别性别比例的早期变化。在这项研究中,我们在不同的发育阶段采集了 Lithobates sylvaticus 和 Silurana tropicalis 蝌蚪样本,涵盖了性别分化的整个过程。选择了三个已知参与其他脊椎动物物种性别分化的候选基因,以开发一种识别青蛙表型性别的方法:细胞色素 p450 芳香酶(cyp19)、叉头框 L2(foxl2)和细胞色素 17-α-羟化酶/17,20 裂解酶(cyp17)。这些基因的克隆显示,与其他两栖动物物种相比,核苷酸同一性值在 75-97%之间。通过实时 RT-PCR 分析了 L. sylvaticus 成体性腺和蝌蚪性腺-中肾复合体(GMC)中 cyp17、cyp19 和 foxl2 的基因表达。结果表明,这 3 个基因的表达存在明显的性别二态模式。我们的分析表明,仅 GMC 中 cyp19 的基因表达水平可以作为 L. sylvaticus 蝌蚪表型性别的可靠预测因子。此外,我们通过测量 S. tropicalis GMCs 中的 cyp19 mRNA 水平验证了这种方法。我们建议将 cyp19 作为一种工具,用于研究化学污染物(包括内分泌干扰化合物)对未来两栖类性腺发育和性别比例的影响。