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首页> 外文期刊>Annals of Botany >Phylogenetics of tribe Orchideae (Orchidaceae: Orchidoideae) based on combined DNA matrices: inferences regarding timing of diversification and evolution of pollination syndromes.
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Phylogenetics of tribe Orchideae (Orchidaceae: Orchidoideae) based on combined DNA matrices: inferences regarding timing of diversification and evolution of pollination syndromes.

机译:基于组合的DNA矩阵的兰花科(兰花科:兰花科)的系统发生学:关于授粉综合征多样化和进化时间的推论。

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Background and aims: Tribe Orchideae (Orchidaceae: Orchidoideae) comprises around 62 mostly terrestrial genera, which are well represented in the Northern Temperate Zone and less frequently in tropical areas of both the Old and New Worlds. Phylogenetic relationships within this tribe have been studied previously using only nuclear ribosomal DNA (nuclear ribosomal internal transcribed spacer, nrITS). However, different parts of the phylogenetic tree in these analyses were weakly supported, and integrating information from different plant genomes is clearly necessary in orchids, where reticulate evolution events are putatively common. The aims of this study were to: (1) obtain a well-supported and dated phylogenetic hypothesis for tribe Orchideae, (ii) assess appropriateness of recent nomenclatural changes in this tribe in the last decade, (3) detect possible examples of reticulate evolution and (4) analyse in a temporal context evolutionary trends for subtribe Orchidinae with special emphasis on pollination systems. Methods: The analyses included 118 samples, belonging to 103 species and 25 genera, for three DNA regions (nrITS, mitochondrial cox1 intron and plastid rpl16 intron). Bayesian and maximum-parsimony methods were used to construct a well-supported and dated tree. Evolutionary trends in the subtribe were analysed using Bayesian and maximum-likelihood methods of character evolution. Key Results: The dated phylogenetic tree strongly supported the recently recircumscribed generic concepts of Bateman and collaborators. Moreover, it was found that Orchidinae have diversified in the Mediterranean basin during the last 15 million years, and one potential example of reticulate evolution in the subtribe was identified. In Orchidinae, pollination systems have shifted on numerous occasions during the last 23 million years. Conclusions: The results indicate that ancestral Orchidinae were hymenopteran-pollinated, food-deceptive plants and that these traits have been dominant throughout the evolutionary history of the subtribe in the Mediterranean. Evidence was also obtained that the onset of sexual deception might be linked to an increase in labellum size, and the possibility is discussed that diversification in Orchidinae developed in parallel with diversification of bees and wasps from the Miocene onwards.
机译:背景和目的:兰花科(Orchidaceae:兰花科)包括大约62个主要为陆地属,在北温带地区的代表性很好,而在旧世界和新世界的热带地区则很少出现。以前仅使用核核糖体DNA(核糖体内部转录间隔子,nrITS)研究了该部落内的亲缘关系。但是,在这些分析中,系统发育树的不同部分得到了较弱的支持,并且兰花中网状进化事件很普遍的情况下,显然需要整合来自不同植物基因组的信息。这项研究的目的是:(1)为Orchideae部落获得一个得到充分支持且过时的系统发育假说,(ii)评估最近十年该部落最近命名法变化的适当性,(3)发现网状进化的可能例子(4)在时间范围内分析兰花科的进化趋势,特别着重于授粉系统。方法:分析包括118个样品,分别属于103个物种和25个属,涉及三个DNA区域(nrITS,线粒体 cox1 内含子和质体 rpl16 内含子)。贝叶斯和最大简约方法被用来构造一个支持良好且过时的树。使用贝叶斯和字符进化的最大似然方法分析了亚族的进化趋势。关键结果:过时的系统发育树强烈支持了Bateman和合作者最近重新划定的通用概念。此外,发现在过去的一千五百万年中,兰花科在地中海盆地中发生了变化,并发现了亚部落网状进化的一个潜在例子。在兰花科中,近两千三百万年来,授粉系统发生了多次变化。结论:结果表明,兰科祖先是膜翅目授粉的,具有食物欺骗性的植物,并且这些特征在整个地中海亚部落的进化史中一直占主导地位。也有证据表明,性欺骗的发生可能与白斑大小的增加有关,并讨论了兰花科的多样性与中新世以来蜜蜂和黄蜂的多样性同时发展的可能性。

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