Conservation Genetics Lab, Fish Technology Center, U.S, Fish and Wildlife Service Warm Springs, GA, USA.
Evol Appl. 2013 Feb;6(2):290-302. doi: 10.1111/j.1752-4571.2012.00289.x. Epub 2012 Aug 8.
Estimates of effective population size are critical for species of conservation concern. Genetic datasets can be used to provide robust estimates of this important parameter. However, the methods used to obtain these estimates assume that generations are discrete. We used simulated data to assess the influences of overlapping generations on the estimates of effective size provided by the linkage disequilibrium (LD) method. Our simulations focus on two factors: the degree of reproductive skew exhibited by the focal species and the generation time, without considering sample size or the level of polymorphism at marker loci. In situations where a majority of reproduction is achieved by a small fraction of the population, the effective number of breeders can be much smaller than the per-generation effective population size. The LD in samples of newborns can provide estimates of the former size, while our results indicate that the latter size is best estimated using random samples of reproductively mature adults. Using samples of adults, the downwards bias was less than approximately 15% across our simulated life histories. As noted in previous assessments, precision of the estimate depends on the magnitude of effective size itself, with greater precision achieved for small populations.
有效种群大小的估计对于具有保护意义的物种至关重要。遗传数据集可用于提供该重要参数的可靠估计。然而,用于获得这些估计的方法假定世代是离散的。我们使用模拟数据评估了世代重叠对连锁不平衡(LD)方法提供的有效大小估计的影响。我们的模拟集中在两个因素上:焦点物种表现出的繁殖偏度程度和世代时间,而不考虑样本大小或标记基因座的多态性水平。在大多数繁殖由人口中的一小部分完成的情况下,有效繁殖者的数量可能比每一代有效种群的数量小得多。新生儿样本中的 LD 可以提供前者的估计值,而我们的结果表明,后者的大小最好使用生殖成熟的成年个体的随机样本进行估计。使用成年个体样本,在我们的模拟生命史中,向下偏差小于约 15%。如前评估中所述,估计的精度取决于有效大小本身的大小,小种群的精度更高。