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系统发育与间断分布:非洲紫罗兰(苦苣苔科)的进化

Phylogeny and disjunct distribution: evolution of Saintpaulia (Gesneriaceae).

作者信息

Möller M, Cronk Q C

机构信息

Royal Botanic Garden Edinburgh, UK.

出版信息

Proc Biol Sci. 1997 Dec 22;264(1389):1827-36. doi: 10.1098/rspb.1997.0252.

Abstract

The molecular phylogeny of African violets (Saintpaulia H. Wendl.), based on ribosomal DNA internal transcribed spacer (ITS) sequences, follows the disjunct biogeography of the genus. Sequence analysis by parsimony of 19 accessions, representing 17 currently recognized Saintpaulia species, resulted in four trees of 182 steps. The first major division is between S. goetzeana, from the Uluguru Mts, Tanzania, and the rest of the genus. The basal position of S. goetzeana, and its putative primitive characters, may indicate an Uluguru origin for Saintpaulia and subsequent colonization of the more northerly mountains. Of the remainder, S. teitensis, from the Teita Hills of Kenya, is sister taxon to the other species (which occur mainly in the Usambara Mts of north-east Tanzania). A group of nine Usambaran species that we call the 'ionantha complex' show minimal ITS genetic differentiation and are also taxonomically critical. Species diversity in the Usambara Mts appears to be the result of rapid, recent (possibly Pleistocene) radiation. This study reveals the limitations of ITS sequences for elucidating the radiation of poorly differentiated species (the ionantha complex). However, the molecular data strongly suggest that conservation of the Uluguru and Teita populations is essential for the protection of the full range of diversity within the genus.

摘要

基于核糖体DNA内转录间隔区(ITS)序列的非洲紫罗兰(Saintpaulia H. Wendl.)分子系统发育,遵循了该属植物间断分布的生物地理学特征。通过简约法对代表17种目前已确认的非洲紫罗兰物种的19个样本进行序列分析,得到了四棵步长为182的树。第一个主要分支是坦桑尼亚乌鲁古鲁山脉的戈氏非洲紫罗兰(S. goetzeana)与该属的其他物种之间的分支。戈氏非洲紫罗兰的基部位置及其假定的原始特征,可能表明非洲紫罗兰起源于乌鲁古鲁山脉,随后向北面更远的山脉扩散。在其余物种中,肯尼亚泰塔山的泰氏非洲紫罗兰(S. teitensis)是其他物种(主要分布在坦桑尼亚东北部的乌桑巴拉山脉)的姐妹分类群。我们称为“堇花非洲紫罗兰复合体”的一组九个乌桑巴拉物种,其ITS遗传分化极小,在分类学上也很关键。乌桑巴拉山脉的物种多样性似乎是近期(可能是更新世)快速辐射的结果。这项研究揭示了ITS序列在阐明分化程度较低的物种(堇花非洲紫罗兰复合体)辐射方面的局限性。然而,分子数据强烈表明,保护乌鲁古鲁和泰塔山的种群对于保护该属内的全部多样性至关重要。

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