Chen Cai, Wang Xiaoyan, Zong Wencheng, D'Alessandro Enrico, Giosa Domenico, Guo Yafen, Mao Jiude, Song Chengyi
College of Animal Science & Technology, Yangzhou University, Yangzhou 225009, China.
Department of Veterinary Science, University of Messina, 98168 Messina, Italy.
Animals (Basel). 2021 Apr 15;11(4):1136. doi: 10.3390/ani11041136.
RIPs have been developed as effective genetic markers and popularly applied for genetic analysis in plants, but few reports are available for domestic animals. Here, we established 30 new molecular markers based on the SINE RIPs, and applied them for population genetic analysis in seven Chinese miniature pigs. The data revealed that the closed herd (BM-clo), inbreeding herd (BM-inb) of Bama miniature pigs were distinctly different from the BM-cov herds in the conservation farm, and other miniature pigs (Wuzhishan, Congjiang Xiang, Tibetan, and Mingguang small ear). These later five miniature pig breeds can further be classified into two clades based on a phylogenetic tree: one included BM-cov and Wuzhishan, the other included Congjiang Xiang, Tibetan, and Mingguang small ear, which was well-supported by structure analysis. The polymorphic information contents estimated by using SINE RIPs are lower than the predictions based on microsatellites. Overall, the genetic distances and breed-relationships between these populations revealed by 30 SINE RIPs generally agree with their evolutions and geographic distributions. We demonstrated the potential of SINE RIPs as new genetic markers for genetic monitoring and population structure analysis in pigs, which can even be extended to other livestock animals.
核糖体失活蛋白(RIPs)已被开发为有效的遗传标记,并广泛应用于植物的遗传分析,但在家畜方面的报道较少。在此,我们基于短散在核元件核糖体失活蛋白(SINE RIPs)建立了30个新的分子标记,并将其应用于7个中国小型猪品种的群体遗传分析。数据显示,巴马小型猪的封闭群体(BM-clo)、近交群体(BM-inb)与保种场的BM-cov群体以及其他小型猪品种(五指山猪、从江香猪、藏猪和明光小耳猪)明显不同。基于系统发育树,后五个小型猪品种可进一步分为两个分支:一个包括BM-cov和五指山猪,另一个包括从江香猪、藏猪和明光小耳猪,结构分析有力地支持了这一结果。使用SINE RIPs估计的多态信息含量低于基于微卫星的预测。总体而言,30个SINE RIPs揭示的这些群体之间的遗传距离和品种关系与其进化和地理分布基本一致。我们证明了SINE RIPs作为猪遗传监测和群体结构分析新遗传标记的潜力,甚至可以扩展到其他家畜。