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首页> 外文期刊>Molecular phylogenetics and evolution >Diversification in species complexes: Tests of species origin and delimitation in the Bursera simaruba clade of tropical trees (Burseraceae)
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Diversification in species complexes: Tests of species origin and delimitation in the Bursera simaruba clade of tropical trees (Burseraceae)

机译:物种复合体的多样化:热带树木(Burseraceae)的Bursera simaruba进化枝中物种起源和定界的测试

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摘要

Molecular phylogenies are invaluable for testing morphology-based species delimitation in species complexes, as well as for examining hypotheses regarding the origination of species in these groups. Using five nucleotide markers, we reconstructed the phylogeny of the Bursera simaruba species complex of neotropical trees to test the notion that four " satellite" species originated from populations of the most widely distributed member of the genus, B. simaruba, which the satellites strongly resemble. In addition to molecular phylogenetic reconstruction, we tested species delimitation of B. simaruba and the satellites using multivariate analyses of morphological and ecological characters. The analyses evaluated the taxonomic value of these traditional characters and pinpointed those in need of further study, such as the expression of pubescence. Phylogenetic data rejected the origin of three satellite species from their purported ancestor, B. simaruba, and we ascribe their morphological similarity to convergence or parallelism. The fourth satellite species likely represents one end of a spectrum of inflorescence length variation within B. simaruba and is conspecific. Despite its marked morphological variability, we recovered B. simaruba as a single valid species, which implies that it maintains genetic cohesion among distant populations throughout its vast range.
机译:分子系统发育对于测试物种复合物中基于形态学的物种定界,以及检查与这些群体中物种起源有关的假设都是非常宝贵的。使用五个核苷酸标记,我们重建了新热带树木的Bursera simaruba物种复合体的系统发育,以测试以下观点:四个“卫星”物种起源于B. simaruba属中分布最广的成员群体,这些卫星与卫星非常相似。除了分子系统发育重建外,我们还使用形态和生态特征的多变量分析测试了B. simaruba和卫星的物种划界。分析评估了这些传统字符的分类学价值,并指出了需要进一步研究的那些,例如青春期的表达。系统发育数据拒绝了来自其祖先B. simaruba的三个卫星物种的起源,我们将它们的形态相似性归因于收敛或并行。第四种卫星物种可能代表西双歧杆菌内花序长度变化谱的一端,并且是同种的。尽管它具有明显的形态变异性,但我们还是将西麦芽孢杆菌作为单个有效物种进行了恢复,这表明它在整个广阔范围内的远处种群之间都保持了遗传凝聚力。

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