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中性和气候驱动的适应性过程有助于解释一种地中海松树种树脂道性状的种群变异。

Neutral and Climate-Driven Adaptive Processes Contribute to Explain Population Variation in Resin Duct Traits in a Mediterranean Pine Species.

作者信息

Vázquez-González Carla, López-Goldar Xosé, Zas Rafael, Sampedro Luis

机构信息

Misión Biológica de Galicia, Consejo Superior de Investigaciones Científicas (CSIC), Pontevedra, Spain.

出版信息

Front Plant Sci. 2019 Dec 13;10:1613. doi: 10.3389/fpls.2019.01613. eCollection 2019.

Abstract

Resin ducts are important anatomical defensive traits related to biotic resistance in conifers. Previous studies have reported intraspecific genetic variation in resin duct characteristics. However, little is currently known about the micro-evolutionary patterns and adaptive value of these defensive structures. Here, we quantified inter-population genetic variation in resin duct features and their inducibility in and assessed whether such variation was associated with climate gradients. To that end, we characterized the resin duct system of 2-year-old saplings from 10 populations across the species' distribution range. We measured axial resin duct features (density, mean size, and percentage conductive area of resin ducts) and their inducibility in response to methyl jasmonate. Genotyping of single nucleotide polymorphisms allowed to account for the population genetic structure in our models in order to avoid spurious correlations between resin duct characteristics and climate. We found large inter-population variation in resin duct density and conductive area, but not in their inducibility. Our results suggest that population variation in the percentage conductive area of resin ducts likely arise from adaptation to local climate conditions. This study highlights the adaptive relevance of resin ducts and helps to shed light on the micro-evolutionary patterns of resin-based defenses in conifers.

摘要

树脂道是针叶树中与生物抗性相关的重要解剖学防御特征。先前的研究报道了树脂道特征的种内遗传变异。然而,目前对于这些防御结构的微观进化模式和适应价值知之甚少。在此,我们量化了树脂道特征的种群间遗传变异及其诱导性,并评估了这种变异是否与气候梯度相关。为此,我们对该物种分布范围内10个种群的2年生幼树的树脂道系统进行了表征。我们测量了轴向树脂道特征(密度、平均大小和树脂道的传导面积百分比)及其对茉莉酸甲酯的诱导性。单核苷酸多态性的基因分型使我们能够在模型中考虑种群遗传结构,以避免树脂道特征与气候之间的虚假相关性。我们发现树脂道密度和传导面积存在较大的种群间变异,但诱导性不存在种群间变异。我们的结果表明,树脂道传导面积百分比的种群变异可能源于对当地气候条件的适应。这项研究突出了树脂道的适应性相关性,并有助于阐明针叶树中基于树脂的防御的微观进化模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47b3/6923275/b8ab5aacc362/fpls-10-01613-g001.jpg

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