Evaluating genetic diversity and identifying priority conservation for seven Tibetan pig populations in China based on the mtDNA D-loop.

IF 2.2 2区 农林科学
Asian-Australasian Journal of Animal Sciences Pub Date : 2020-12-01 Epub Date: 2020-01-13 DOI:10.5713/ajas.19.0752
Qianyun Ge, Caixia Gao, Yuan Cai, Ting Jiao, Jinqiang Quan, Yongbo Guo, Wangshan Zheng, Shengguo Zhao
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引用次数: 3

Abstract

Objective: Tibetan pigs, an excellent species unique to China, face serious threats, which in turn affects the development and utilization of the outstanding advantages of plateau hypoxia adaptability and reduces their genetic diversity. Therefore, a discussion of measures to conserve this genetic resource is necessary. The method, based on genetic diversity, genetic divergence and total genetic contribution rate of population, reflects the priority conservation order and varies depending on the three different purposes of conservation.

Methods: We analyzed mitochondrial DNA control region (D-loop) variation in 1,201 individuals from nine Tibetan pig populations across five provinces and downloaded 564 mtDNA D-loop sequences from three indigenous pig breeds in Qinghai, Sichuan, and Yunnan Provinces distributed near the Tibetan pigs.

Results: We analyzed three different aspects: Changdu Tibetan pigs have the highest genetic diversity, and from the perspective of genetic diversity, the priority conservation is Changdu Tibetan pigs. Hezuo Tibetan pigs have the highest genetic contribution, so the priority conservation is Hezuo Tibetan pigs in the genetic contribution aspect. Rkaze Tibetan pigs were severely affected by indigenous pig breeds, so if considering from the perspective of introgression, the priority conservation is Rkaze Tibetan pigs.

Conclusion: This study evaluated genetic diversity and comprehensively assessed conservation priority from three different aspects in nine Tibetan pig populations.

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基于mtDNA D-loop的中国7个藏猪群体遗传多样性评价及优先保护选择
摘要目的:藏猪作为中国特有的优良物种,其生存受到严重威胁,高原低氧适应优势的开发利用受到影响,遗传多样性下降。因此,有必要探讨保护这一遗传资源的措施。该方法基于种群的遗传多样性、遗传分化和总遗传贡献率,反映了优先保护顺序,并根据三种不同的保护目的而有所不同。方法:分析了来自5个省9个藏猪种群的1201个个体的线粒体DNA控制区(D-loop)变异,下载了分布在藏猪附近的青海、四川和云南3个地方猪品种的564个mtDNA D-loop序列。结果:从三个不同的方面分析:昌都藏猪的遗传多样性最高,从遗传多样性的角度来看,昌都藏猪应优先保护;河作藏猪遗传贡献最高,在遗传贡献方面应优先保护河作藏猪。Rkaze藏猪受到本土猪种的严重影响,如果从入侵的角度考虑,优先保护Rkaze藏猪。结论:本研究对9个藏猪群体的遗传多样性进行了评价,并从3个不同方面综合评价了保护重点。
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来源期刊
Asian-Australasian Journal of Animal Sciences
Asian-Australasian Journal of Animal Sciences AGRICULTURE, DAIRY & ANIMAL SCIENCE-
自引率
0.00%
发文量
0
审稿时长
3 months
期刊介绍: Asian-Australasian Journal of Animal Sciences (AJAS) aims to publish original and cutting-edge research results and reviews on animal-related aspects of the life sciences. Emphasis will be placed on studies involving farm animals such as cattle, buffaloes, sheep, goats, pigs, horses, and poultry. Studies for the improvement of human health using animal models may also be publishable. AJAS will encompass all areas of animal production and fundamental aspects of animal sciences: breeding and genetics, reproduction and physiology, nutrition, meat and milk science, biotechnology, behavior, welfare, health, and livestock farming systems.
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