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Geography Plays a More Important Role than Soil Composition on Structuring Genetic Variation of Pseudometallophyte Commelina communis

机译:在构建伪金属植物群落的遗传变异中地理比土壤组成更重要

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摘要

Pseudometallophytes are excellent models to study microevolution and local adaptation to soil pollution, as they can grow both on metalliferous and contrasting non-metalliferous soils. Although, there has been accumulating evidence for the effects of edaphic conditions and geographical isolation on the genetic structure of pesudometallophytes, it is still a difficult problem in evolutionary biology to assess their relative importance. In this study, we investigated the spatial patterns of genetic variability, population differentiation and genetic groups in pseudometallophyte Commelina communis with 12 microsatellite loci. Eight metallicolous and six non-metallicolous populations of C. communis were sampled from cupriferous sites and surrounding non-contaminated areas in China. Neither significant reduction in genetic diversity nor apparent founder and bottleneck effects were observed in metallicolous populations of C. communis. Based on Bayesian and Neighbor-Joining clustering analyses and a principal coordinates analysis, all sampled populations were found to be mainly separated into three genetic groups, corresponding well to their geographical locations rather than edaphic origins. Moreover, a significant and strong correlation between population genetic divergence and geographical distance were detected by Mantel test (r = 0.33; P < 0.05) and multiple matrix regression with randomization (MMRR; βD = 0.57, P < 0.01). However, the effect of copper concentration on genetic patterns of C. communis was not significant (MMRR; βE = -0.17, P = 0.12). Our study clearly demonstrated that the extreme edaphic conditions in metalliferous areas had limited effects on the genetic variability in C. communis. Geographic distance played a more important role in affecting the genetic structure of C. communis than soil composition did. In C. communis, the geographically disjunctive populations on metalliferous soils had multiple origins and evolved independently from nearby non-metallicolous populations.
机译:假金属植物是研究微观进化和对土壤污染的局部适应性的优秀模型,因为它们可以在含金属的和非含金属的土壤上生长。尽管有积累的证据证明了造山条件和地理隔离对假金属植物的遗传结构的影响,但是评估它们的相对重要性仍然是进化生物学中的一个难题。在这项研究中,我们调查了具有12个微卫星基因座的拟金属植物Commelina communis的遗传变异,种群分化和遗传群体的空间格局。从中国铜污染地区和周围未受污染的地区采样了八个铜色和六个非铜色种群。没有观察到C. communis的含金属种群遗传多样性显着减少,也没有明显的创始人和瓶颈效应。根据贝叶斯和邻居加入的聚类分析和主坐标分析,发现所有采样种群主要分为三个遗传群,与它们的地理位置相对应,而不是其起源。此外,通过Mantel检验(r = 0.33; P <0.05)和多矩阵随机回归回归(MMRR;βD= 0.57,P <0.01),发现种群遗传差异与地理距离之间存在显着且强烈的相关性。但是,铜浓度对C. Comm。的遗传模式的影响并不显着(MMRR;βE= -0.17,P = 0.12)。我们的研究清楚地表明,在含金属的地区中,极端的水生条件对C. communis的遗传变异性影响有限。地理距离比土壤成分在影响C. Comm。的遗传结构中起着更重要的作用。在C. communis中,含金属土壤上的地理分离种群有多个起源,并独立于附近的非金属化种群演化。

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