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沼生荸荠亚属(莎草科)的茎结构:一组泛热带莎草动态形态演化的证据

Stem architecture in Eleocharis subgenus Limnochloa (Cyperaceae): Evidence of dynamic morphological evolution in a group of pantropical sedges.

作者信息

Hinchliff Cody E, Roalson Eric H

机构信息

School of Biological Sciences and Center for Integrated Biotechnology, Washington State University, Pullman, Washington 99164-4236 USA.

出版信息

Am J Bot. 2009 Aug;96(8):1487-99. doi: 10.3732/ajb.0800252. Epub 2009 Jul 20.

Abstract

We examined phylogenetic relationships and patterns of stem structural evolution in Eleocharis subgenus Limnochloa, an ecologically and economically important group of tropical to temperate-growing sedges, whose stems serve as the primary photosynthetic organs. We used maximum parsimony, likelihood, and Bayesian inference to develop phylogenetic trees and stochastic mapping and a Markov one-rate model to develop character history reconstructions of stem architecture. A complex history of stem shape evolution characterized by a high degree of homoplasy and rapid rates of change (an average of 13 transitions per character history for about 25 species) was identified across subgenus Limnochloa. Character states transition much more frequently in some lineages than others, but tend to follow a consistent directional pattern of evolutionary change. Our data also suggest that changes in stem shape and anatomy may be associated with speciation events in the subgenus (Pagel's κ = 0.3503, P = 0.04579) and may have some adaptive significance. The potential adaptive roles of stem structural traits are unclear, but may be elucidated by further studies. This work serves as a starting point for future evolutionary studies of stem shape and structure in monocots and provides important background knowledge for further studies of ecological adaptations of Eleocharis.

摘要

我们研究了荸荠属Limnochloa亚属的系统发育关系和茎结构进化模式,该亚属是一类在生态和经济方面都很重要的莎草,分布于热带至温带地区,其茎是主要的光合器官。我们使用最大简约法、似然法和贝叶斯推断来构建系统发育树,并使用随机映射和马尔可夫单速率模型来重建茎结构的性状历史。在Limnochloa亚属中,我们发现了一个复杂的茎形状进化历史,其特征是高度的同塑性和快速的变化速率(约25个物种的每个性状历史平均有13次转变)。性状状态在某些谱系中的转变比其他谱系更频繁,但往往遵循一致的进化变化方向模式。我们的数据还表明,茎形状和解剖结构的变化可能与该亚属的物种形成事件有关(Pagel's κ = 0.3503,P = 0.04579),并且可能具有一定的适应性意义。茎结构特征的潜在适应性作用尚不清楚,但可能会通过进一步的研究得到阐明。这项工作是未来单子叶植物茎形状和结构进化研究的起点,并为荸荠属生态适应性的进一步研究提供了重要的背景知识。

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