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Reticulate evolution and incomplete lineage sorting among the ponderosa pines

机译:美国黄松之间的网状进化和不完整的谱系排序

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Interspecific gene flow via hybridization may play a major role in evolution by creating reticulate rather than hierarchical lineages in plant species. Occasional diploid pine hybrids indicate the potential for introgression, but reticulation is hard to detect because ancestral polymorphism is still shared across many groups of pine species. Nucleotide sequences for 53 accessions from 17 species in subsection Ponderosae (Pinus) provide evidence for reticulate evolution. Two discordant patterns among independent low-copy nuclear gene trees and a chloroplast haplotype are better explained by introgression than incomplete lineage sorting or other causes of incongruence. Conflicting resolution of three monophyletic Pinus coulteri accessions is best explained by ancient introgression followed by a genetic bottleneck. More recent hybridization transferred a chloroplast from P. jeffreyi to a sympatric P. washoensis individual. We conclude that incomplete lineage sorting could account for other examples of non-monophyly, and caution against any analysis based on single-accession or single-locus sampling in Pinus.
机译:通过杂交的种间基因流可能通过在植物物种中形成网状而不是等级谱系而在进化中起主要作用。偶然的二倍体松树杂种显示出潜在的基因渗入,但是由于祖先的多态性仍然在许多松树物种组中共享,因此很难检测到网状结构。蓬(Pinusosae)(Pinus)小节中来自17个物种的53个种质的核苷酸序列提供了网状进化的证据。相对于不完整的谱系排序或其他不一致的原因,通过基因渗入可以更好地解释独立的低拷贝核基因树和叶绿体单倍型之间的两种不一致模式。三种渐进融合和随后的遗传瓶颈可以最好地解释三种单生松林种的冲突解析。最近的杂交将叶绿体从杰弗里氏疟原虫转移到同胞华氏疟原虫个体。我们得出的结论是,不完整的血统排序可能会解释非单性的其他示例,并告诫不要对基于Pinus中单次添加或单位置采样的任何分析进行分析。

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