Sex identification of birds in Taipei Zoo.

IF 1.2 4区 生物学 Q3 VETERINARY SCIENCES Zoo Biology Pub Date : 2024-05-01 Epub Date: 2024-03-14 DOI:10.1002/zoo.21828
Cheng-Wei Liu, Hsuan-Yi Hou, Hsin-I Hsieh, Nian-Hong Jang-Liaw
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Abstract

As a conservation and breeding institution for birds, Taipei Zoo plays an important role in restoring endangered species. As approximately half of all bird species are monomorphic, precisely confirming the sex of individuals is critical for the management of ex-situ conservation breeding populations, as well as for understanding the sex ratio of those in the wild. Generally, PCR is used more reliably for sex determination versus traditional methods such as plumage, behavior or hormone levels. Nevertheless, the various primer sets and annealing temperatures vary between species, and so inaccurate sexing can occasionally happen due to inadequate PCR conditions. To reduce the probability of misidentification, and to establish a PCR condition database for sex determination across the diverse range of avian taxa, we tested multiple primer sets and annealing temperatures for amplification of the bird sex-specific gene fragments (CHD1) for each captive or rescued avian species held at Taipei Zoo since 2014. A total of 162 species across 22 orders were tested using one or two primer sets. One hundred and fifty-five species were successfully sexed by the primer set 2550F/2718R and the success rate of sex typing reached over 90% of species tested in each order. Most species have suitable PCR annealing temperatures between 45°C and 55°C, and the species in the same avian taxa showed similar results in temperature. This indicates that it is possible to select the annealing temperature of other species in the same family when the species had not been tested before. We expect this study will improve the success rate of identifying sex by using applicable PCR conditions and reduce the time for searching references every time before attempts to PCR sex birds.

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台北动物园鸟类的性别鉴定。
作为鸟类保护和繁殖机构,台北动物园在恢复濒危物种方面发挥着重要作用。由于约有一半的鸟类物种是单形的,因此精确确认个体的性别对于管理异地保护繁殖种群以及了解野生鸟类的性别比例至关重要。一般来说,与羽色、行为或激素水平等传统方法相比,利用 PCR 进行性别鉴定更为可靠。然而,不同物种的引物组和退火温度各不相同,因此偶尔会出现因 PCR 条件不足而导致性别鉴定不准确的情况。为了降低错误鉴定的概率,并建立一个PCR条件数据库,用于对不同种类的鸟类进行性别鉴定,我们测试了多种引物组和退火温度,用于扩增台北动物园自2014年以来饲养或救助的每种鸟类的鸟类性别特异性基因片段(CHD1)。使用一组或两组引物对 22 个目共计 162 个物种进行了测试。通过引物组2550F/2718R,有155个物种成功进行了性别鉴定,各目物种的性别鉴定成功率达到90%以上。大多数物种的适宜 PCR 退火温度在 45°C 至 55°C 之间,同一鸟类类群的物种在温度方面表现出相似的结果。这表明,当同一科中的其他物种之前未进行过测试时,选择该物种的退火温度是可能的。我们希望这项研究能通过使用适用的 PCR 条件来提高鉴定性别的成功率,并减少每次尝试对鸟类进行 PCR 性别鉴定前查找参考文献的时间。
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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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