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蕨类植物的物种多样化和体型进化速率是否相关?

Are rates of species diversification and body size evolution coupled in the ferns?

机构信息

The Pringle Herbarium, University of Vermont, 27 Colchester Drive, Burlington, VT, 05405, USA.

出版信息

Am J Bot. 2018 Mar;105(3):525-535. doi: 10.1002/ajb2.1044. Epub 2018 Apr 10.

Abstract

PREMISE OF THE STUDY

Understanding the relationship between phenotypic evolution and lineage diversification is a central goal of evolutionary biology. To extend our understanding of the role morphological evolution plays in the diversification of plants, we examined the relationship between leaf size evolution and lineage diversification across ferns.

METHODS

We tested for an association between body size evolution and lineage diversification using a comparative phylogenetic approach that combined a time-calibrated phylogeny and leaf size data set for 2654 fern species. Rates of leaf size change and lineage diversification were estimated using BAMM, and rate correlations were performed for rates obtained for all families and individual species. Rates and patterns of rate-rate correlation were also analyzed separately for terrestrial and epiphytic taxa.

KEY RESULTS

We find no significant correlation between rates of leaf area change and lineage diversification, nor was there a difference in this pattern when growth habit is considered. Our results are consistent with the findings of an earlier study that reported decoupled rates of body size evolution and diversification in the Polypodiaceae, but conflict with a recent study that reported a positive correlation between body size evolution and lineage diversification rates in the tree fern family Cyatheaceae.

CONCLUSIONS

Our findings indicate that lineage diversification in ferns is largely decoupled from shifts in body size, in contrast to several other groups of organisms. Speciation in ferns appears to be primarily driven by hybridization and isolation along elevational gradients, rather than adaptive radiations featuring prominent morphological restructuring. The exceptional diversity of leaf morphologies in ferns appears to reflect a combination of ecophysiological constraints and adaptations that are not key innovations.

摘要

研究前提

理解表型进化与谱系多样化之间的关系是进化生物学的核心目标。为了扩展我们对形态进化在植物多样化中所起作用的理解,我们研究了叶片大小进化与蕨类植物谱系多样化之间的关系。

方法

我们使用比较系统发育方法检验了体型进化与谱系多样化之间的关联,该方法结合了一个时间校准的系统发育和 2654 种蕨类植物的叶片大小数据集。使用 BAMM 估计了叶片大小变化和谱系多样化的速率,并对所有科和个别物种的速率进行了速率相关性分析。还分别分析了陆生和附生类群的速率和速率相关性模式。

主要结果

我们没有发现叶片面积变化率与谱系多样化之间存在显著相关性,也没有发现当考虑生长习性时,这种模式存在差异。我们的结果与早期一项研究的发现一致,该研究报告了 Polypodiaceae 中体型进化和多样化的速率是脱钩的,但与最近一项研究的结果相冲突,该研究报告了在树蕨科 Cyatheaceae 中体型进化与谱系多样化速率之间存在正相关。

结论

我们的研究结果表明,蕨类植物的谱系多样化与体型变化在很大程度上是脱钩的,这与其他几个生物群不同。蕨类植物的物种形成似乎主要是由杂交和隔离沿海拔梯度驱动的,而不是以明显的形态重构为特征的适应性辐射。蕨类植物叶片形态的非凡多样性似乎反映了生态生理限制和适应的结合,而不是关键创新。

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