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气候变化对一种小型亚热带和暖温带树木的景观连通性及遗传簇的影响

The Effects of Climate Change on Landscape Connectivity and Genetic Clusters in a Small Subtropical and Warm-Temperate Tree.

作者信息

Guan Bicai, Gao Jingjing, Chen Wei, Gong Xi, Ge Gang

机构信息

College of Life Sciences, Nanchang University, Nanchang, China.

出版信息

Front Plant Sci. 2021 Nov 10;12:671336. doi: 10.3389/fpls.2021.671336. eCollection 2021.

Abstract

Climate change is a great threat to global biodiversity and has resulted in serious ecological consequences. Although the potential effects of climate change on genetic diversity have recently received much research attention, little research has focused on the impacts of climate change on genetic connectivity and the relationship between climate stability and genetic divergence. Here, we combined population connectivity with genetic data to predict the impacts of future climate change on genetic connectivity. Coupled with climatic variables and genetic data, we used POPS software to create spatially explicit simulations and predict the dynamics in genetic clusters in response to climate changes. A generalized additive model was employed to test the correlation between climatic stability and genetic diversification. Our findings indicated that a reduction in species distribution due to severe climate change would lead to a substantial loss of genetic connectivity. More severe future climatic scenarios would likely cause greater loss of variability or more distinct homogenization in genetic variation of species. Relatively low interpolated genetic distances are generally associated with areas of greater losses in climatic suitability from the present to the future. The displacement of climatic genetic clusters will challenge species adaptation to future climate change because of the loss of fundamental evolutionary potential. The persistence capacity of plant species may be weakened in the face of future climate change.

摘要

气候变化是对全球生物多样性的巨大威胁,并已导致严重的生态后果。尽管气候变化对遗传多样性的潜在影响最近受到了很多研究关注,但很少有研究聚焦于气候变化对遗传连通性的影响以及气候稳定性与遗传分化之间的关系。在此,我们将种群连通性与遗传数据相结合,以预测未来气候变化对遗传连通性的影响。结合气候变量和遗传数据,我们使用POPS软件创建空间明确的模拟,并预测遗传簇对气候变化的动态响应。采用广义相加模型来检验气候稳定性与遗传多样性之间的相关性。我们的研究结果表明,由于严重的气候变化导致物种分布减少,将导致遗传连通性的大幅丧失。未来更严峻的气候情景可能会导致物种遗传变异的更大损失或更明显的同质化。从当前到未来,相对较低的插值遗传距离通常与气候适宜性损失更大的区域相关。气候遗传簇的迁移将挑战物种对未来气候变化的适应能力,因为基本进化潜力的丧失。面对未来气候变化,植物物种的持久能力可能会被削弱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a843/8631755/03f82d6d8c3c/fpls-12-671336-g001.jpg

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