利用31颗微卫星评价宫古马遗传多样性。

Q3 Veterinary
Mioko Masuda, Akihiro Nikadori, Emi Nikadori, Naoya Uchida, Yoshimasa Takizawa, Mutsuki Ishimaru, Takumi Yamamoto, Reiko Yuasa, Haruo Kugai, Yukio Nagahama, Masaki Takasu, Teruaki Tozaki
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引用次数: 1

摘要

宫古马是日本本土的马品种。与其他日本本土马一样,由于机械化和机动化,宫古马的数量减少了,这减少了它们的作用,1980年只有14匹。尽管到2021年,它们的数量已经增加到55匹,但为了避免灭绝,它们的数量还需要进一步增加。最近,它们的繁殖包括在群体放牧期间进行自然交配;因此,谱系管理一直很困难,个体鉴定一直不确定。为了制定有效的育种计划,本研究利用微卫星来确定亲代关系,并评估遗传多样性随时间的变化。首先,微卫星基因型组合鉴定出35.3%的现有个体存在误解的亲代关系,并重建了正确的家谱。然后分别计算1998-2012年和2013-2020年两个时间段的等位基因数量、杂合度观测值和期望值。其值分别为4.2、0.705、0.653和3.9、0.633、0.603,表明2013-2020年各指标的遗传多样性呈下降趋势。这可能是由于2013-2020年种群中种马的偏见。在像宫古马这样的小种群中,系谱信息的错误可能会增加近亲繁殖的风险,使用基因型来确认亲子关系可能是有益的。此外,为了保持未来育种的多样性,重要的是要避免偏见,特别是在种马之间,并确保尽可能远亲的不同个体的后代。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Evaluation of genetic diversity using 31 microsatellites in Miyako horses.

Evaluation of genetic diversity using 31 microsatellites in Miyako horses.

Evaluation of genetic diversity using 31 microsatellites in Miyako horses.

The Miyako horse is a native Japanese horse breed. As with other native Japanese horses, the number of Miyako horses decreased due to mechanization and motorization, which reduced their roles, with just 14 in 1980. Although their population had increased to 55 horses by 2021, a further increase in their numbers is required to avoid extinction. Recently, their breeding has involved natural mating during group grazing; therefore, pedigree management has been difficult, and individual identification has been inconclusive. With the aim of formulating an effective breeding plan, this study used microsatellites to confirm parent-offspring relationships and evaluate the genetic diversity over time. First, the combination of microsatellite genotypes identified misunderstood parent-offspring relationships in 35.3% of the existing individuals, and a correct family tree was reconstructed. Next, the number of alleles and observed and expected values of heterozygosity were calculated separately for the populations during periods of 1998-2012 and 2013-2020. The values were 4.2, 0.705, and 0.653 and 3.9, 0.633, and 0.603, respectively, indicating that genetic diversity according to all indices decreased during period of 2013-2020. This was probably because of the bias of stallions in the 2013-2020 population. Errors in pedigree information in a small population such as Miyako horses could increase the risk of inbreeding, and confirmation of parent-offspring relationships using genotypes may be beneficial. Additionally, to maintain diversity in future breeding, it is important to avoid bias, particularly among stallions, and to ensure offspring of various individuals who are as distantly related to each other as possible.

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来源期刊
Journal of Equine Science
Journal of Equine Science Veterinary-Equine
CiteScore
1.60
自引率
0.00%
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9
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