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优化低普查数量圈养种群有效种群大小的育种策略:以……为例

Breeding Strategies to Optimize Effective Population Size in Low Census Captive Populations: The Case of .

作者信息

Ojeda-Marín Candela, Cervantes Isabel, Moreno Eulalia, Goyache Félix, Gutiérrez Juan Pablo

机构信息

Departamento de Producción Animal, Facultad de Veterinaria, Universidad Complutense de Madrid, Avda. Puerta de Hierro s/n, E-28040 Madrid, Spain.

Estación Experimental de Zonas Áridas-CSIC, 04120 La Cañada de San Urbano, Almería, Spain.

出版信息

Animals (Basel). 2021 May 27;11(6):1559. doi: 10.3390/ani11061559.

Abstract

Small-sized animal populations can undergo significant loss of genetic variability that can lead to their extinction. Therefore, studies on animal breeding have focused on mating systems for minimizing the disappearance of genetic variability. The main objective of this study was to compare, using computer simulations, the performance of different breeding schemes to limit the loss of genetic diversity in small-sized populations. This objective was achieved by monitoring the evolution of the effective population size obtained by 23 strategies throughout 20 generations in two populations of . The scenarios were designed with different assumptions, in both reference subpopulations, regarding: the use of parents coancestry or offspring coancestry, the use of their increases or the coefficients themselves, and the number of males and females involved. Computations were performed using an experimental module of Endog v4.9 developed for this purpose. The results of the study showed that strategies for minimizing the coancestry of the parents were better in the short term; however, these strategies were worse in the long term. Minimizing the average coancestry of the offspring was a better approach in the long term. Nevertheless, in both populations, the best results were obtained when both the coancestry of the parents and the coancestry of the offspring were weighted at 5% each and neither males nor females were assumed to contribute to the next generation. In any case, not all strategies had the same evolutionary pattern throughout generations in both populations. The current results show that neither traditional nor new strategies have any general use. Therefore, it is important to carefully test these strategies before applying them to different populations with different breeding needs under different conditions, such as different generation intervals, and different natural breeding systems such as monogamy or polygyny.

摘要

小型动物种群可能会经历显著的遗传变异性丧失,这可能导致它们灭绝。因此,动物育种研究集中在交配系统上,以尽量减少遗传变异性的消失。本研究的主要目的是通过计算机模拟比较不同育种方案在限制小型种群遗传多样性丧失方面的表现。通过监测两个种群中23种策略在20代内获得的有效种群大小的演变来实现这一目标。这些方案在两个参考亚种群中设计了不同的假设,涉及:亲本共祖系数或后代共祖系数的使用、它们的增量或系数本身的使用,以及涉及的雄性和雌性数量。使用为此目的开发的Endog v4.9实验模块进行计算。研究结果表明,短期内使亲本共祖系数最小化的策略效果较好;然而,从长期来看这些策略效果较差。从长期来看,使后代平均共祖系数最小化是更好的方法。尽管如此,在两个种群中,当亲本共祖系数和后代共祖系数各加权5%且不假定雄性或雌性对下一代有贡献时,能获得最佳结果。无论如何,并非所有策略在两个种群的各代中都具有相同的进化模式。目前的结果表明,传统策略和新策略都没有普遍适用性。因此,在将这些策略应用于具有不同育种需求的不同种群、不同条件(如不同世代间隔)以及不同自然育种系统(如一夫一妻制或一夫多妻制)之前,仔细测试这些策略非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d0c/8226440/9c7294c7b7d9/animals-11-01559-g001.jpg

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