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首页> 外文期刊>Global change biology >Climatic changes can drive the loss of genetic diversity in a Neotropical savanna tree species
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Climatic changes can drive the loss of genetic diversity in a Neotropical savanna tree species

机译:气候变化会导致新热带稀树草原树种遗传多样性的丧失

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The high rates of future climatic changes, compared with the rates reported for past changes, may hamper species adaptation to new climates or the tracking of suitable conditions, resulting in significant loss of genetic diversity. Trees are dominant species in many biomes and because they are long-lived, they may not be able to cope with ongoing climatic changes. Here, we coupled ecological niche modelling (ENM) and genetic simulations to forecast the effects of climatic changes on the genetic diversity and the structure of genetic clusters. Genetic simulations were conditioned to climatic variables and restricted to plant dispersal and establishment. We used a Neotropical savanna tree as species model that shows a preference for hot and drier climates, but with low temperature seasonality. The ENM predicts a decreasing range size along the more severe future climatic scenario. Additionally, genetic diversity and allelic richness also decrease with range retraction and climatic genetic clusters are lost for both future scenarios, which will lead genetic variability to homogenize throughout the landscape. Besides, climatic genetic clusters will spatially reconfigure on the landscape following displacements of climatic conditions. Our findings indicate that climate change effects will challenge population adaptation to new environmental conditions because of the displacement of genetic ancestry clusters from their optimal conditions.
机译:与过去报告的变化率相比,未来气候变化率很高,可能会妨碍物种适应新气候或跟踪适宜条件,从而导致遗传多样性的重大丧失。树木是许多生物群落中的优势物种,因为它们的寿命很长,它们可能无法应对持续的气候变化。本文将生态位建模(ENM)和遗传模拟相结合,预测了气候变化对遗传多样性和遗传簇结构的影响。遗传模拟以气候变量为条件,仅限于植物的传播和建立。我们使用新热带稀树草原作为物种模型,该模型显示出对炎热和干燥气候的偏好,但具有低温季节性。ENM预测,随着未来更严峻的气候情景,范围规模将不断缩小。此外,遗传多样性和等位基因丰富度也随着范围的缩小而降低,并且在未来两种情况下气候遗传簇都会丢失,这将导致遗传变异性在整个景观中同质化。此外,气候遗传簇将在气候条件位移后在景观上进行空间重组。我们的研究结果表明,气候变化的影响将挑战种群对新环境条件的适应,因为遗传祖先簇从其最佳条件中位移。

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