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反复干扰对遗传多样性的影响。

Implications of recurrent disturbance for genetic diversity.

作者信息

Davies Ian D, Cary Geoffrey J, Landguth Erin L, Lindenmayer David B, Banks Sam C

机构信息

The Fenner School of Environment and Society The Australian National University Canberra ACT Australia.

Division of Biological Sciences University of Montana Missoula Montana.

出版信息

Ecol Evol. 2016 Jan 25;6(4):1181-96. doi: 10.1002/ece3.1948. eCollection 2016 Feb.

Abstract

Exploring interactions between ecological disturbance, species' abundances and community composition provides critical insights for ecological dynamics. While disturbance is also potentially an important driver of landscape genetic patterns, the mechanisms by which these patterns may arise by selective and neutral processes are not well-understood. We used simulation to evaluate the relative importance of disturbance regime components, and their interaction with demographic and dispersal processes, on the distribution of genetic diversity across landscapes. We investigated genetic impacts of variation in key components of disturbance regimes and spatial patterns that are likely to respond to climate change and land management, including disturbance size, frequency, and severity. The influence of disturbance was mediated by dispersal distance and, to a limited extent, by birth rate. Nevertheless, all three disturbance regime components strongly influenced spatial and temporal patterns of genetic diversity within subpopulations, and were associated with changes in genetic structure. Furthermore, disturbance-induced changes in temporal population dynamics and the spatial distribution of populations across the landscape resulted in disrupted isolation by distance patterns among populations. Our results show that forecast changes in disturbance regimes have the potential to cause major changes to the distribution of genetic diversity within and among populations. We highlight likely scenarios under which future changes to disturbance size, severity, or frequency will have the strongest impacts on population genetic patterns. In addition, our results have implications for the inference of biological processes from genetic data, because the effects of dispersal on genetic patterns were strongly mediated by disturbance regimes.

摘要

探索生态干扰、物种丰度和群落组成之间的相互作用,可为生态动力学提供关键见解。虽然干扰也可能是景观遗传格局的一个重要驱动因素,但对于这些格局可能通过选择性和中性过程产生的机制,我们还了解得不够透彻。我们利用模拟来评估干扰 regime 组成部分的相对重要性,以及它们与种群统计和扩散过程的相互作用,对景观中遗传多样性分布的影响。我们研究了干扰 regime 的关键组成部分的变化以及可能对气候变化和土地管理做出响应的空间格局(包括干扰大小、频率和严重程度)的遗传影响。干扰的影响通过扩散距离来介导,并且在一定程度上通过出生率来介导。尽管如此,所有三个干扰 regime 组成部分都强烈影响亚种群内遗传多样性的时空格局,并与遗传结构的变化相关。此外,干扰引起的种群动态时间变化和景观中种群的空间分布导致种群间距离隔离模式的破坏。我们的结果表明,干扰 regime 的预测变化有可能导致种群内部和种群之间遗传多样性分布的重大变化。我们强调了未来干扰大小、严重程度或频率的变化对种群遗传格局影响最强的可能情景。此外,我们的结果对从遗传数据推断生物过程具有启示意义,因为扩散对遗传格局的影响在很大程度上受到干扰 regime 的介导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/258e/4761767/c4a8d4e7575c/ECE3-6-1181-g001.jpg

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