Validating enzyme immunoassays for non-invasive reproductive hormone monitoring in Temminck's pangolin.

IF 2.6 3区 环境科学与生态学 Q2 BIODIVERSITY CONSERVATION Conservation Physiology Pub Date : 2024-11-14 eCollection Date: 2024-01-01 DOI:10.1093/conphys/coae079
Juan Scheun, Andre Ganswindt, Raymond Jansen, Kim Labuschagne
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Abstract

Gonadal hormones play a central role in reproductive function and success. As such, quantifying reproductive hormones non-invasively in threatened, vulnerable and endangered wildlife species offers an ideal tool for assessing general and individual reproductive patterns in situ. Whilst the use of faeces as a hormone matrix is often preferred in these cases, the required enzyme immunoassays (EIAs) for measuring faecal androgen (fAM), oestrogen (fEM) and progestagen metabolite (fPM) concentrations must first be validated if a species gets investigated for the first time to ensure biologically relevant patterns can be observed. In this study we aimed to biologically validate the EIAs for monitoring fAM, fEM and fPM concentrations in Temminck's pangolin, Smutsia temminckii. Hormone metabolite concentrations derived from each EIA tested were compared between different age and sex classes. An epiandrosterone EIA effectively measured androgen levels in males, distinguishing between adult and juvenile individuals, as well as both female age classes. Similarly, the tested oestrogen EIA successfully distinguished between adult and juvenile female fEM concentrations, and both tested progestagen EIAs demonstrated adequate differences between fPM concentrations of adult and juvenile females. The now-validated EIAs offer robust tools for a non-invasive monitoring of reproductive activity in Temminck's pangolin. The development of such techniques will allow researchers to assess reproductive hormone patterns of the species in situ, whilst also paving the way for further studies in this field. Despite the small sample size due to the species' conservation status, the study provides a foundation for future research using a robust, validated, non-invasive monitoring tool. The latter can now be implemented in long-term monitoring with larger sample sizes to yield more comprehensive data, aiding in the conservation of Temminck's pangolin.

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验证酶免疫测定法对坦明克穿山甲生殖激素的无创监测。
性腺激素在生殖功能和成功率方面发挥着核心作用。因此,对受威胁、易受伤害和濒危野生动物物种的生殖激素进行非侵入式量化,是在原地评估总体和个体生殖模式的理想工具。在这些情况下,使用粪便作为激素基质通常是首选,但如果是首次调查一个物种,则必须首先验证测量粪便雄激素(fAM)、雌激素(fEM)和孕激素代谢物(fPM)浓度所需的酶免疫测定(EIA),以确保能够观察到与生物相关的模式。在本研究中,我们旨在从生物学角度验证用于监测 Temminck 穿山甲(Smutsia temminckii)体内 fAM、fEM 和 fPM 浓度的 EIA。我们对不同年龄和性别的穿山甲进行了激素代谢物浓度的比较。表雄酮环评有效地测量了雄性个体的雄激素水平,区分了成年个体和幼年个体,也区分了雌性个体的年龄。同样,测试的雌激素环评成功地区分了成年女性和幼年女性的 fEM 浓度,测试的两种孕激素环评也充分显示了成年女性和幼年女性的 fPM 浓度之间的差异。现在经过验证的 EIA 为无创监测坦明克穿山甲的生殖活动提供了强有力的工具。这种技术的开发将使研究人员能够就地评估该物种的生殖激素模式,同时也为该领域的进一步研究铺平了道路。尽管由于该物种的保护状况,样本量较小,但这项研究为今后使用可靠、有效的非侵入性监测工具开展研究奠定了基础。后者现在可以在更大样本量的长期监测中使用,以获得更全面的数据,从而为保护滕敏克穿山甲提供帮助。
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来源期刊
Conservation Physiology
Conservation Physiology Environmental Science-Management, Monitoring, Policy and Law
CiteScore
5.10
自引率
3.70%
发文量
71
审稿时长
11 weeks
期刊介绍: Conservation Physiology is an online only, fully open access journal published on behalf of the Society for Experimental Biology. Biodiversity across the globe faces a growing number of threats associated with human activities. Conservation Physiology will publish research on all taxa (microbes, plants and animals) focused on understanding and predicting how organisms, populations, ecosystems and natural resources respond to environmental change and stressors. Physiology is considered in the broadest possible terms to include functional and mechanistic responses at all scales. We also welcome research towards developing and refining strategies to rebuild populations, restore ecosystems, inform conservation policy, and manage living resources. We define conservation physiology broadly and encourage potential authors to contact the editorial team if they have any questions regarding the remit of the journal.
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