Development of genetic markers for reproductive management of toucans.

IF 1.2 4区 生物学 Q3 VETERINARY SCIENCES Zoo Biology Pub Date : 2023-11-01 Epub Date: 2023-06-20 DOI:10.1002/zoo.21792
Jeffrey L Coleman, Jennifer T Wyffels, Linda M Penfold, Daryl Richardson, J Dylan Maddox
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Abstract

Retention of genetic diversity in successive generations is key to successful ex situ programs and will become increasingly important to restore wild populations of threatened animals. When animal genealogy is partly unknown or gaps exist in studbook records, the application of molecular resources facilitates informed breeding. Here, we apply molecular resources to an ex situ breeding population of toucans (Ramphastidae), a bird family zoos commonly maintain. Toucans face population declines from illegal poaching and habitat degradation. We developed novel microsatellite markers using blood samples from 15 Keel-billed Toucans (Ramphastos sulfuratus Lesson 1830). Parentage of two individuals was known a priori, but possible sibship among 13 putative founders-including the parents-was unknown. We compared available avian heterologous and novel microsatellite markers to recover known relationships and reconstruct sibship. Eight of 61 heterologous markers amplified consistently and were polymorphic, but less so than the 18 novel markers. Known sibship (and three sibling pairs whose relatedness was unknown a priori) and paternity-though not maternity except in one case-were well-recovered using both likelihood and pairwise relatedness methods, when incorporating novel but not heterologous markers. Zoo researchers seeking microsatellite primer sets for their breeding toucan populations will likely benefit from our heterologous markers, which can be leveraged both to assess relatedness and select breeding pairs. We recommend that zoo biologists rely on species-specific primers and not optimize heterologous primers for toucan species without molecular resources. We conclude with a brief discussion of modern genotyping methods of interest to zoo researchers.

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巨嘴鸟生殖管理遗传标记的开发。
在后代中保持遗传多样性是迁移计划成功的关键,对于恢复濒危动物的野生种群将变得越来越重要。当动物谱系部分未知或血统记录存在空白时,分子资源的应用有助于知情育种。在这里,我们将分子资源应用于巨嘴鸟(Ramphastidae)的迁地繁殖种群,这是一种鸟类家族动物园通常维持的种群。巨嘴鸟的数量因非法偷猎和栖息地退化而下降。我们利用15只龙骨嘴巨嘴鸟的血液样本开发了新型微卫星标记物。两个人的亲子关系是先验的,但13个假定的创始人(包括父母)之间可能的兄弟关系是未知的。我们比较了现有的鸟类异源和新的微卫星标记,以恢复已知的关系和重建兄弟关系。61个异源标记中有8个具有一致性扩增和多态性,但与18个新标记相比,多态性较少。已知的兄弟姐妹关系(以及三对兄弟姐妹的先天关系未知)和父系关系(尽管除了一个案例之外没有母系关系)在结合新而非异源标记时,使用可能性和成对相关性方法都得到了很好的恢复。动物园研究人员为其繁殖的巨嘴鸟种群寻找微卫星引物集,可能会受益于我们的异源标记,这可以用来评估亲缘关系和选择繁殖配对。我们建议动物园生物学家对没有分子资源的巨嘴鸟品种依赖于物种特异性引物,而不是优化异源引物。最后,我们简要讨论了动物园研究人员感兴趣的现代基因分型方法。
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来源期刊
Zoo Biology
Zoo Biology 生物-动物学
CiteScore
2.50
自引率
15.40%
发文量
85
审稿时长
6-12 weeks
期刊介绍: Zoo Biology is concerned with reproduction, demographics, genetics, behavior, medicine, husbandry, nutrition, conservation and all empirical aspects of the exhibition and maintenance of wild animals in wildlife parks, zoos, and aquariums. This diverse journal offers a forum for effectively communicating scientific findings, original ideas, and critical thinking related to the role of wildlife collections and their unique contribution to conservation.
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