Bernos Thaїs A, Fraser Dylan J
Department of Biology, Concordia University, 7141 rue Sherbrooke Ouest, Montréal, Québec, Canada, H4B1R6.
Mol Ecol. 2016 Sep;25(18):4472-87. doi: 10.1111/mec.13790. Epub 2016 Sep 6.
Adult census population size (N) and effective number of breeders (Nb ) are highly relevant for designing effective conservation strategies. Both parameters are often challenging to quantify, however, making it of interest to determine whether one parameter can be generalized from the other. Yet, the spatiotemporal relationship between N and Nb has not been well characterized empirically in many taxa. We analysed this relationship for 5-7 consecutive years in twelve brook trout populations varying greatly in N (49-10032) and Nb (3-567) and identified major environmental variables affecting the two parameters. N or habitat size alone explained 47-57% of the variance in Nb , and Nb was strongly correlated with effective population size. The ratio Nb /N ranged from 0.01 to 0.45 and increased at small N or following an annual decrease in N, suggesting density-dependent constraints on Nb . We found no evidence for a consistent, directional difference between variability in Nb and/or Nb /N among small and large populations; however, small populations had more varying temporal variability in Nb /N ratios than large populations. Finally, Nb and Nb /N were 2.5- and 2.3-fold more variable among populations than temporally within populations. Our results demonstrate a clear linkage between demographic and evolutionary parameters, suggesting that Nb could be used to approximate N (or vice versa) in natural populations. Nevertheless, using one variable to infer the other to monitor trends within populations is less recommended, perhaps even less so in small populations given their less predictable Nb vs. N dynamics.
成年普查种群规模(N)和有效繁殖者数量(Nb)对于设计有效的保护策略高度相关。然而,这两个参数通常都难以量化,因此确定一个参数是否可以从另一个参数推断出来很有意义。然而,在许多分类群中,N和Nb之间的时空关系尚未通过实证得到很好的表征。我们对12个溪鳟种群连续5至7年分析了这种关系,这些种群的N(49 - 10032)和Nb(3 - 567)差异很大,并确定了影响这两个参数的主要环境变量。单独的N或栖息地大小解释了Nb变异的47 - 57%,并且Nb与有效种群大小密切相关。Nb/N的比值范围为0.01至0.45,在N较小时或N年度下降后增加,表明对Nb存在密度依赖限制。我们没有发现证据表明大小种群之间在Nb和/或Nb/N的变异性上存在一致的、方向性的差异;然而,小种群的Nb/N比值的时间变异性比大种群更多样。最后,种群间Nb和Nb/N的变异性分别是种群内时间变异性的2.5倍和2.3倍。我们的结果表明了人口统计学和进化参数之间的明确联系,这表明在自然种群中Nb可以用来近似N(反之亦然)。然而,不太建议使用一个变量来推断另一个变量以监测种群内的趋势,在小种群中可能更是如此,因为它们的Nb与N动态较难预测。