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Plastome phylogeny and lineage diversification of Salicaceae with focus on poplars and willows

机译:水杨科的塑性系统系统发育和谱系多样化,重点是杨树和柳树

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Phylogenetic relationships and lineage diversification of the family Salicaceae sensu lato ( s.l .) remain poorly understood. In this study, we examined phylogenetic relationships between 42 species from six genera based on the complete plastomes. Phylogenetic analyses of 77 protein coding genes of the plastomes produced good resolution of the interrelationships among most sampled species and the recovered clades. Of the sampled genera from the family, Flacourtia was identified as the most basal and the successive clades comprised both Itoa and Poliothyrsis , Idesia , two genera of the Salicaceae sensu stricto ( s.s .) ( Populus and Salix ). Five major subclades were recovered within the Populus clade. These subclades and their interrelationships are largely inconsistent with morphological classifications and molecular phylogeny based on nuclear internal transcribed spacer sequence variations. Two major subclades were identified for the Salix clade. Molecular dating suggested that species diversification of the major subclades in the Populus and Salix clades occurred mainly within the recent Pliocene. In addition, we found that the rpl32 gene was lost and the rps7 gene evolved into a pseudogene multiple times in the sampled genera of the Salicaceae s.l . Compared with previous studies, our results provide a well‐resolved phylogeny from the perspective of the plastomes.
机译:水杨科(Salicaceae sensu lato)(s.l.)家族的系统发生关系和谱系多样化仍然知之甚少。在这项研究中,我们基于完整的质体组检查了六个属的42个物种之间的系统发育关系。系统发育分析的77个蛋白质编码基因的质体组可以很好地解析大多数采样物种和回收的进化枝之间的相互关系。在该家族的采样属中,黄皮病被认为是最基础的,随后的进化枝包括伊塔亚和小孢子虫(Idesia),即杨柳(Salicaceae sensu stricto(s.s.))的两个属(Populus和Salix)。在Populus进化枝中发现了五个主要的子进化枝。这些子小节及其相互关系在很大程度上与基于核内转录间隔区序列变异的形态分类和分子系统发育不一致。柳树分支鉴定出两个主要的子分支。分子测年表明,胡杨和柳属主要进化枝的物种多样化主要发生在最近的上新世内。另外,我们发现在杨柳科的取样属中rpl32基因丢失并且rps7基因多次进化成假基因。与以前的研究相比,我们的结果从质体组的角度提供了很好的系统发育系统。

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