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The population biology of mitigation: impacts of habitat creation on an endangered plant species

机译:减灾人口生物学:生境创作对濒危植物物种的影响

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Conservation practitioners widely agree that optimal conservation strategies will maximize the amount of genetic variation preserved in target taxa, but there is ongoing debate about how that variation should be distributed through restoration and mitigation activities. Here, we evaluate the impacts of ~10 years of mitigation on the population genetic structure of Limnanthes vinculans, a state- and federally-listed endangered plant species restricted to ephemeral vernal pool wetlands in the Santa Rosa Plain of California. Using microsatellite loci to estimate patterns of neutral molecular variation, we found that created pools support similar levels of variation in L. vinculans as natural pools. Habitat creation and seed translocation have not disrupted the largest-scale patterns of population structure across the species range, but a concentration of mitigation activity towards the range center has reduced the extent of isolation-by-distance operating in this region and shifted the location of at least one genetic boundary. Patterns of genetic variation among populations in remnant vernal pools reveal that gene flow has historically occurred beyond the scale of individual pools at the center of the species range, while small genetic populations have differentiated around the range margins. On average, L. vinculans in created pools exhibit less cover and more restricted local distributions than those in remnant pools, but these patterns were driven by two particularly productive natural sites rather than consistent differences between natural and created sites. We conclude that mitigation activities have changed the historical patterns of gene flow within the species range to a moderate degree, that these changes will likely impact remnant pools through gene flow, and that current created sites provide less heterogeneous habitat for L. vinculans than do natural pools. Studies that track individual plants will be needed to determine if the changes in gene flow due to mitigation will have positive or negative impacts on the demographic and microevolutionary trajectories of L. vinculans. More generally, this study provides a retrospective analysis of the outcome of managing an endangered plant species through intensive mitigation, and yields several insights to inform future conservation strategies.
机译:保护从业者普遍认为,最佳的保护策略将最大限度地提高目标分类群中保存的遗传变异量,但有关如何通过恢复和缓解活动分配变更的争论。在这里,我们评估了〜10年减轻对林莲族人口遗传结构的影响,限于加州圣罗莎平原的短期春季沼泽地的国家和联邦上市的濒危植物物种。使用微卫星基因座来估计中性分子变异模式,我们发现所产生的池支持类似于L. Vinculans作为自然池的类似水平。栖息地创作和种子易位没有扰乱整个物种范围的最大规模的人口结构模式,但朝向范围中心的缓解活动浓度降低了在该区域中运行的隔离程度,并转移了位置至少一个遗传边界。残余春季群体的遗传变异模式表明,基因流动已经历史上发生,超出了物种范围的中心范围的单个池的规模,而小的遗传群体围绕着范围边距差异化。平均而言,L. vinculans在创造的池中表现出较少的封面和比残余池中的局部分布更少,但这些模式由两种特别生产性的天然位点驱动,而不是自然和创造的地点之间的一致差异。我们得出结论,减缓活动已经改变了物种范围内的基因流动的历史模式,中等程度,这些变化可能会通过基因流动冲击残留池,并且当前产生的位点为L. Vinculans提供较少的异质栖息地池。将需要进行追踪个体植物的研究,以确定由于缓解引起的基因流的变化是否对L.Vinculans的人口统计和微观型轨迹产生正面或负面影响。更一般地说,本研究提供了通过密集缓解管理濒危植物物种的结果的回顾性分析,并产生了几点了解未来的保护策略。

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