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首页> 外文期刊>Molecular phylogenetics and evolution >Molecular Phylogenetics of Calamus (Palmae) and Related Rattan Genera Based on 5S nrDNA Spacer Sequence Data
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Molecular Phylogenetics of Calamus (Palmae) and Related Rattan Genera Based on 5S nrDNA Spacer Sequence Data

机译:基于5S nrDNA间隔序列数据的Cal蒲(Palmae)和相关藤条属的分子系统发育

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摘要

Phylogenetic relationships among the rattan palm genera Calamus, Daemonorops, Ceratolobus, Calospatha, Pogonotium, and Retispatha were investigated using DNA sequences from the nontranscribed spacer of 5S nrDNA. Moderate levels of intragenome polymorphism were identified, indicating that concerted evolution is not completely homogenizing the multiple copies of the 5S nrDNA repeat present in the nuclear genome. The existence of intragenome polymorphism did not excessively interfere with phylogeny reconstruction because, in the majority of cases, multiple clones obtained from individual species were resolved as monophyletic groups. The highly speciose genus Calamus was found to be nonmonophyletic with all five remaining genera being embedded within it. A number of major lineages within Calamus were resolved, one of which included the monotypic genus Calospatha, another included the monotypic genus Retispatha, and a third included a monophyletic group comprising Daemonorops, Ceratolobus, and Pogonotium. While the findings indicate that generic circumscriptions require revision, a nomenclatural solution was not sought at this stage because inadequate sampling and lack of support at basal nodes suggested that the topologies obtained might not be entirely reliable. Under these circumstances, name changes to such an important group would be both unhelpful and irresponsible.
机译:使用来自5S nrDNA非转录间隔区的DNA序列研究了藤条棕榈属Calamus,Daemonorops,Ceratolobus,Calospatha,Pogonotium和Retispatha之间的亲缘关系。鉴定出中等水平的基因组内多态性,表明协同进化并未完全均化存在于核基因组中的5S nrDNA重复序列的多个拷贝。基因组内多态性的存在不会过多地干扰系统发育重建,因为在大多数情况下,将从单个物种获得的多个克隆解析为单系统组。发现高规格Cal蒲属非单系,其余五个属均嵌入其中。 Cal蒲中的许多主要谱系得到了解决,其中一个包括单型属Calospatha,另一个包括单型属Retispatha,第三个包括由Daemonorops,角藻属和Pogonotium组成的单系。尽管这些发现表明通用的限制条件需要修改,但在现阶段仍未寻求命名方法,因为采样不足以及基节点缺乏支持表明所获得的拓扑可能并不完全可靠。在这种情况下,将名称更改为如此重要的团体既无益又不负责任。

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