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早春降低了沿海拔梯度开花同步性降低导致基因流动的可能性。

Earlier spring reduces potential for gene flow via reduced flowering synchrony across an elevational gradient.

机构信息

Department of Biology, University of Ottawa, K1N 6N5, Ottawa, Ontario, Canada.

Département des Sciences Biologiques, Université du Québec à Montréal, H2X 1Y4, Montréal, Québec, Canada.

出版信息

Am J Bot. 2021 Mar;108(3):538-545. doi: 10.1002/ajb2.1627. Epub 2021 Mar 17.

DOI:10.1002/ajb2.1627
PMID:33733494
Abstract

PREMISE

One of the best-documented ecological responses to climate warming involves temporal shifts of phenological events. However, we lack an understanding of how phenological responses to climate change vary among populations of the same species. Such variability has the potential to affect flowering synchrony among populations and hence the potential for gene flow.

METHODS

To test whether an earlier start of the growing season affects the potential for gene flow among populations, we quantified the distributions of flowering times of two spring-flowering plants (Trillium erectum and Erythronium americanum) over 6 years along an elevational gradient. We developed a novel model-based metric of potential gene flow between pairs of populations to quantify the potential for pollen-mediated gene flow based on flowering phenology.

RESULTS

Earlier onset of spring led to greater separation of peak flowering dates across the elevational gradient for both species investigated, but was only associated with a reduction in potential gene flow in T. erectum, not E. americanum.

CONCLUSIONS

Our study suggests that climate change could decrease gene flow via phenological separation among populations along climatic gradients. We also provide a novel method for quantifying potential pollen-mediated gene flow using data on flowering phenology, based on a quantitative, more biologically interpretable model than other available metrics.

摘要

前提

有大量文献记载表明,气候变化引起的物候时间变化是对气候变暖的最佳响应之一。然而,我们还不了解同一物种的不同种群对气候变化的物候响应有何差异。这种变异性有可能影响种群之间的开花同步性,并进而影响基因流。

方法

为了检验生长季节的提前是否会影响种群间的基因流潜力,我们在 6 年间,沿着海拔梯度,对两种春季开花植物(延龄草和美洲獐牙菜)的开花时间分布进行了量化。我们开发了一种新的基于模型的种群间潜在基因流度量方法,根据开花物候来量化基于花粉传播的基因流潜力。

结果

对于两种被调查的物种,春季的提前开始导致在整个海拔梯度上的开花高峰期日期更加分离,但这仅与延龄草而非美洲獐牙菜的潜在基因流减少有关。

结论

我们的研究表明,气候变化可能会通过气候梯度上种群间的物候分离来减少基因流。我们还提供了一种使用开花物候数据量化潜在花粉介导基因流的新方法,该方法基于比其他现有指标更具定量性和更具生物学解释性的模型。

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