Dillon Robert T
Department of Biology College of Charleston Charleston SC USA.
Ecol Evol. 2018 Feb 7;8(5):2746-2751. doi: 10.1002/ece3.3912. eCollection 2018 Mar.
Despite the utility of gastropod models for the study of evolutionary processes of great generality and importance, their effective population size has rarely been estimated in the field. Here, we report allele frequency variance at three allozyme-encoding loci monitored over 7 years in a population of the invasive freshwater pulmonate snail (Draparnaud 1805), estimating effective population size with both single-sample and two-sample approaches. Estimated declined from effectively infinite in 2009 to approximately 40-50 in 2012 and then rose back to infinity in 2015, corresponding to a striking fluctuation in the apparent census size of the population. Such volatility in may reflect cryptic population subdivision.
尽管腹足纲动物模型在研究具有广泛普遍性和重要性的进化过程中具有实用性,但在野外很少对其有效种群大小进行估计。在此,我们报告了在7年时间里对入侵性淡水肺螺(Draparnaud,1805)种群中三个编码等位酶的基因座的等位基因频率方差,使用单样本和双样本方法估计有效种群大小。估计值从2009年的有效无穷大下降到2012年的约40 - 50,然后在2015年又回升到无穷大,这与该种群明显的普查规模的显著波动相对应。有效种群大小的这种波动可能反映了隐秘的种群细分。