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Urinary hormone analysis assists reproductive monitoring and sex identification of bell frogs (Litoria raniformis)

机译:尿激素分析有助于钟形蛙(Litoria raniformis)的生殖监测和性别鉴定

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摘要

With the world currently facing a global amphibian extinction crisis, the development of techniques to help meet the needs of conservation managers and researchers studying the reproductive biology of amphibians is needed. Here, we developed enzyme immunoassays to measure estrone, testosterone, and progesterone hormone metabolites in the urine of Litoria raniformis, the southern bell frog. Concentrations of urinary estrone, testosterone, and progesterone increased during the breeding season for females (P<0.05). Concentrations of urinary testosterone and progesterone increased for males during the breeding season compared with that for months where no reproductive behaviors were observed (P<0.05). Furthermore, urinary estrone concentrations proved to be a reliable sexing tool for adult frogs, with no overlap between the sexes in 98% of cases, regardless of season. There was no difference in estrone (P=0.204) or testosterone (P=0.485) metabolite concentrations between samples taken immediately upon capture and those taken 12 to 24h later from the same individual. Progesterone metabolite concentrations were lower on Day 2 than upon collection (P=0.004). This is the first study to show that urinary hormone analysis can be a useful technique for reproductive monitoring in an amphibian. Additionally, hormone metabolite measures offer promise as sex identification tools for monomorphic species and for those whose secondary sex characteristics are visible only during the breeding season.
机译:当前世界正面临全球性的两栖动物灭绝危机,因此需要开发技术来满足保护管理人员和研究两栖动物生殖生物学的研究人员的需求。在这里,我们开发了酶免疫测定法来测量南部铃蛙Litoria raniformis尿液中的雌酮,睾丸激素和孕酮激素代谢产物。雌性繁殖期尿雌酮,睾丸激素和孕酮的浓度升高(P <0.05)。与未观察到生殖行为的几个月相比,繁殖季节男性的睾丸激素和孕酮浓度升高(P <0.05)。此外,尿雌酮浓度被证明是成年蛙可靠的性交工具,在98%的情况下,男女之间没有重叠,无论季节如何。捕获后立即采集的样品与之后12至24h从同一个体采集的样品之间的雌酮(P = 0.204)或睾丸激素(P = 0.485)代谢物浓度没有差异。第2天的孕酮代谢物浓度比收集时低(P = 0.004)。这是第一项表明尿激素分析可以作为两栖动物生殖监测的有用技术的研究。此外,激素代谢物的测量方法有望作为单态物种和仅在繁殖季节可见其次生性别特征的性别识别工具。

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