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首页> 外文期刊>Botanical Journal of the Linnean Society >Geographical diversification of the genus Cicer (Leguminosae: Papilionoideae) inferred from molecular phylogenetic analyses of chloroplast and nuclear DNA sequences
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Geographical diversification of the genus Cicer (Leguminosae: Papilionoideae) inferred from molecular phylogenetic analyses of chloroplast and nuclear DNA sequences

机译:从叶绿体和核DNA序列的分子系统发育分析推断,Cicer(Leguminosae:Papilionoideae)属的地理多样性

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摘要

Cicer L. (Leguminosae: Papilionoideae) consists of 42 species of herbaceous or semi-shrubby annuals and perennialsdistributed throughout the temperate zones of the Northern Hemisphere. The origin and geographical relationshipsof the genus are poorly understood. We studied the geographical diversification and phylogenetic relationships ofCicer using DNA sequence data sampled from two plastid regions, trnK/matK and trnS-trnG, and two nuclearregions, the internal transcribed spacer (ITS) and external transcribed spacer (ETS) regions of nuclear ribosomalDNA, from 30 species. The results from the phylogenetic analyses of combined nuclear and chloroplast sequence datarevealed four well-supported geographical groups: a Middle Eastern group, a West-Central Asian group, an Aegean-Mediterranean group, and an African group. Age estimates for Cicer based on methods that do not assume a molecular clock (for example, penalized likelihood) demonstrate that the genus has a Mediterranean origin with considerable diversification in the Miocene/Pliocene epochs. Geological events, such as mountain orogenesis andenvironmental changes, are major factors for the dispersal of Cicer species. The early divergence of African speciesand their geographically distinct region in the genus suggest a broader distribution pattern of the genus in the pastthan at present.
机译:Cicer L.(Leguminosae:Papilionoideae)由42种草本或半灌木一年生植物和多年生植物组成,分布在北半球的温带地区。该属的起源和地理关系知之甚少。我们使用从两个质体区trnK / matK和trnS-trnG以及两个核区,核糖体DNA的内部转录间隔区(ITS)和外部转录间隔区(ETS)区域采样的DNA序列数据研究了Cicer的地理多样性和系统发生关系。来自30种。对组合的核和叶绿体序列数据进行系统发育分析的结果揭示了四个得到充分支持的地理组:中东组,西亚-中亚组,爱琴海-地中海组和非洲组。基于没有假定分子钟的方法(例如,可能性似然)的Cicer的年龄估计表明,该属起源于地中海,中新世/上新世时期具有相当大的多样性。地质事件,例如山脉造山运动和环境变化,是导致柑橘物种扩散的主要因素。非洲物种的早期分化及其在属上的地理上不同的区域表明,过去过去该属的分布模式更为广泛。

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