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The role of wood anatomy in phylogeny reconstruction of Ericales

机译:木材解剖在Ericalis系统发育重建中的作用

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摘要

The systematic significance of wood anatomical characters within Ericales is evaluated using separate and combined parsimony analyses including 23 wood characters and 3945 informative molecular characters. Analyses of wood features alone result in poorly resolved and conflicting topologies. However, when pedomorphic character states are coded as inapplicable, the combined bootstrap topology results in an increase of resolution and support at most deeper nodes compared with the molecular analyses. This suggests that phylogenetic information from the limited number of morphological characters is not completely swamped by an overwhelming amount of molecular data. Based on the morphology of vessels and fibers, and the distribution of axial parenchyma, two major wood types can be distinguished within Ericales: (i) a "primitive" type, nearly identical to the wood structure in the more basal outgroup Cornales, which is likely to have persisted in one major clade, and (ii) a "derived" type that must have evolved in at least two separate evolutionary lines. The occurrence of the first type is strongly correlated with shrubs to small trees growing in cold temperate or tropical montane regions, while the second type is common in tall trees of tropical lowlands. This favors the inclusion of ecologically adaptive features in phylogeny reconstruction. (c) The Willi Hennig Society 2006.
机译:使用单独的和组合的简约分析,包括23个木材特征和3945个信息分子特征,评估了埃里卡利斯内木材解剖特征的系统重要性。仅对木材特征进行分析会导致解析度差且相互矛盾的拓扑。但是,当将亚纯字符状态编码为不适用时,与分子分析相比,组合的自举拓扑会导致分辨率提高,并在更深的节点上得到支持。这表明来自数量有限的形态特征的系统发育信息并未被大量的分子数据完全淹没。根据血管和纤维的形态以及轴向薄壁组织的分布,在埃里卡利斯地区可以区分出两种主要的木材类型:(i)一种“原始”类型,几乎与更基础的基那莱斯(Cornerales)的木材结构相同。 (ii)必须至少在两个独立的进化系中进化的“派生”类型。第一种类型的发生与灌木相关,而灌木与在温带或热带山地地区生长的小树木有关,而第二种类型常见于热带低地的高大树木中。这有利于在系统发育重建中包括生态适应性特征。 (c)2006年威利·亨尼格学会。

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