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系统发育推断否定了藓类植物(苔藓植物)中藓纲基于孢子体的分类:快速辐射表明孢子体进化中存在广泛的趋同现象。

Phylogenetic inference rejects sporophyte based classification of the Funariaceae (Bryophyta): rapid radiation suggests rampant homoplasy in sporophyte evolution.

机构信息

Department of Ecology and Evolutionary Biology, University of Connecticut, Storrs, CT 06269, USA.

出版信息

Mol Phylogenet Evol. 2012 Jan;62(1):130-45. doi: 10.1016/j.ympev.2011.09.010. Epub 2011 Sep 22.

Abstract

The moss family Funariaceae, which includes the model systems Funaria hygrometrica and Physcomitrella patens, comprises 15 genera, of which three accommodate approximately 95% of the 250-400 species. Generic concepts are drawn primarily from patterns in the diversity of morphological complexity of the sporophyte. Phylogenetic inferences from ten loci sampled across the three genomic compartments yield a hypothesis that is incompatible with the current circumscription of two of the speciose genera of the Funariaceae. The single clade, comprising exemplars of Funaria with a compound annulus, is congruent with the systematic concept proposed by Fife (1985). By contrast, Entosthodon and Physcomitrium are resolved as polyphyletic entities, and even the three species of Physcomitrella are confirmed to have diverged from distinct ancestors. Although the backbone relationships within the core clade of the Funariaceae remain unresolved, the polyphyly of these genera withstands alternative hypothesis testing. Consequently, the sporophytic characters that define these lineages are clearly homoplasious suggesting that selective pressures (or their relaxation) are in fact driving the diversification rather than the conservation of sporophytic architecture in the Funariaceae.

摘要

金发藓科(Funariaceae)包括模式生物水湿扭口藓(Funaria hygrometrica)和拟石松(Physcomitrella patens),包含 15 个属,其中 3 个属约包含 250-400 种的 95%。属的概念主要来自于孢子体形态复杂性的多样性模式。从三个基因组区室中采样的十个基因座的系统发育推断产生了一个假设,该假设与金发藓科两个多样性丰富的属的当前定义不一致。由具复合环的水湿扭口藓的代表组成的单一分支与 Fife(1985)提出的系统概念是一致的。相比之下,Entosthodon 和 Physcomitrium 被解析为多系实体,甚至 Physcomitrella 的三个物种也被证实是从不同的祖先分化而来的。尽管金发藓科核心分支内的骨干关系仍未解决,但这些属的多系性经得起替代假说检验。因此,定义这些谱系的孢子体特征显然是同源的,这表明选择性压力(或其放松)实际上正在推动金发藓科的多样化,而不是孢子体结构的保守。

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