Efficacy of salmon GnRHa, Ovaprim® and hCG for hormonal stimulation of spermiation in the Fowler's toad (Anaxyrus fowleri).

IF 2.6 3区 环境科学与生态学 Q2 BIODIVERSITY CONSERVATION Conservation Physiology Pub Date : 2024-08-21 eCollection Date: 2024-01-01 DOI:10.1093/conphys/coae056
Erin M Saylor, Andrew J Kouba, Melanie R Boudreau, Nucharin Songsasen, Carrie K Kouba
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Abstract

Ex situ amphibian populations can experience reproductive dysfunction due to the absence of environmental cues that trigger reproductive events. Assisted reproductive technologies (ART) for amphibians, specifically exogenous hormone regimens, can circumvent these external signals to induce gametogenesis and gamete release. Currently, the use of the mammalian reproductive hormones gonadotropin-releasing hormone (GnRH) and human chorionic gonadotropin (hCG) are used in a species-specific manner to stimulate amphibian breeding. Hormones or hormone mixtures that are effective in all breeding scenarios would provide the best option for conservation practitioners and some commercial products are already in use for breeding other ectotherms. Ovaprim®, which contains salmon GnRH analogue (sGnRHa) and the dopamine antagonist domperidone (DOM), is effective in fish aquaculture and may be effective for amphibians. To test this hypothesis, we treated Fowler's toads (Anaxyrus fowleri) with either sGnRHa alone, a high or low dose of Ovaprim® or hCG. We then compared spermiation response, sperm quantity and quality parameters, and changes in animal mass over time within each treatment. We found administration of Ovaprim® resulted in more males producing sperm with better motility compared to administration of sGnRHa alone. In addition, the Ovaprim® and sGnRHa treatments resulted in lower response rates, lower sperm motilities, more abnormal sperm, and higher aggregations of sperm compared to the hCG treatment. Furthermore, Ovaprim®-treated males gained significant mass, suggesting an anti-diuretic effect of DOM. Together, these results show that neither Ovaprim® nor sGnRHa, at the concentrations tested, are likely suitable replacements for hCG in ex situ bufonid breeding programmes and that hormone mixtures developed for fish may have limited transferability to new world toad species.

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鲑鱼 GnRHa、Ovaprim® 和 hCG 对福乐蟾(Anaxyrus fowleri)精子生成的激素刺激作用。
由于缺乏触发繁殖事件的环境线索,两栖动物种群可能会出现繁殖功能障碍。两栖动物的辅助生殖技术(ART),特别是外源激素疗法,可以规避这些外部信号,诱导配子发生和配子释放。目前,哺乳动物的生殖激素促性腺激素释放激素(GnRH)和人类绒毛膜促性腺激素(hCG)被用于以特定物种的方式刺激两栖动物繁殖。对所有繁殖情况都有效的激素或激素混合物将为保护工作者提供最佳选择,一些商业产品已被用于繁殖其他外温动物。含有鲑鱼 GnRH 类似物(sGnRHa)和多巴胺拮抗剂多潘立酮(DOM)的 Ovaprim® 对鱼类养殖有效,对两栖动物也可能有效。为了验证这一假设,我们用单独的 sGnRHa、高剂量或低剂量的 Ovaprim® 或 hCG 处理福氏蟾蜍(Anaxyrus fowleri)。然后,我们比较了精子畸变反应、精子数量和质量参数,以及每种处理中动物质量随时间的变化。我们发现,与单独施用 sGnRHa 相比,施用 Ovaprim® 能使更多雄性动物产生活力更强的精子。此外,与 hCG 处理相比,Ovaprim® 和 sGnRHa 处理导致的反应率更低、精子活力更低、畸形精子更多以及精子聚集率更高。此外,经 Ovaprim® 处理的雄性动物体重明显增加,这表明 DOM 具有抗利尿作用。总之,这些结果表明,无论是Ovaprim®还是sGnRHa,在所测试的浓度下,都不可能替代hCG用于蟾蜍的异地繁殖计划,而且为鱼类开发的激素混合物对新世界蟾蜍物种的适用性可能有限。
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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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