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Phylogenetic Reconstruction and Divergence Time Estimation of Blumea DC. (Asteraceae: Inuleae) in China Based on nrDNA ITS and cpDNA trnL-F Sequences

机译:Blumea DC的系统发育重建和发散时间估计。 nrDNA ITS和cpDNA trnL-F序列分析的中国菊科(Inuleae)

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摘要

The genus Blumea is one of the most economically important genera of Inuleae (Asteraceae) in China. It is particularly diverse in South China, where 30 species are found, more than half of which are used as herbal medicines or in the chemical industry. However, little is known regarding the phylogenetic relationships and molecular evolution of this genus in China. We used nuclear ribosomal DNA (nrDNA) internal transcribed spacer (ITS) and chloroplast DNA (cpDNA) trnL-F sequences to reconstruct the phylogenetic relationship and estimate the divergence time of Blumea in China. The results indicated that the genus Blumea is monophyletic and it could be divided into two clades that differ with respect to the habitat, morphology, chromosome type, and chemical composition of their members. The divergence time of Blumea was estimated based on the two root times of Asteraceae. The results indicated that the root age of Asteraceae of 76–66 Ma may maintain relatively accurate divergence time estimation for Blumea, and Blumea might had diverged around 49.00–18.43 Ma. This common ancestor had an explosive expansion during the Oligocene and Miocene and two major clades were differentiated during these epochs 29.60 Ma (17.76–45.23 Ma 95% HPD (Highest Posterior Density). Evidence from paleogeography and paleoclimate studies has confirmed that Blumea experienced differentiation and an explosive expansion during the Oligocene and Miocene.
机译:Blumea属是中国Inuleae(Asteraceae)最重要的经济属之一。在华南地区尤其如此,那里发现了30种,其中一半以上用作草药或化学工业。然而,关于该属在中国的亲缘关系和分子进化知之甚少。我们使用核糖体DNA(nrDNA)内部转录间隔区(ITS)和叶绿体DNA(cpDNA)trnL-F序列重建系统发育关系,并估计中国蓝藻的发散时间。结果表明,蓝藻属是单系的,可以分为两个进化枝,它们的生境,形态,染色体类型和成员的化学组成各不相同。蓝藻的发散时间是根据菊科的两个根时间估算的。结果表明,菊科的根年龄在76-66 Ma之间可能会保持相对准确的Blumea发散时间估计,而Blumea可能在49.00-18.43 Ma附近发散。这个共同的祖先在渐新世和中新世发生了爆炸性的扩张,在这两个时期分化了两个主要进化枝29.60 Ma(17.76-45.23 Ma 95%HPD(最高后密度)。渐新世和中新世期间的爆炸性扩张。

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