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首页> 外文期刊>Zoologica Scripta: An International Journal of Evolutionary Zoology >Phylogenetic relationships and divergence times among dormice (Rodentia, Gliridae) based on three nuclear genes
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Phylogenetic relationships and divergence times among dormice (Rodentia, Gliridae) based on three nuclear genes

机译:基于三个核基因的宿舍(啮齿类,剑兰)之间的亲缘关系和发散时间

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摘要

We examined phylogenetic relationships among six species representing three subfamilies, Glirinae, Graphiurinae and Leithiinae with sequences from three nuclear protein-coding genes (apolipoprotein B, APOB; interphotoreceptor retinoid-binding protein, IRBP; recombination-activating gene 1, RAG1). Phylogenetic trees reconstructed from maximum-parsimony (MP), maximum-likelihood (ML) and Bayesian-inference (BI) analyses showed the monophyly of Glirinae (Glis and Glirulus) and Leithiinae (Dryomys, Eliomys and Muscardinus) with strong support, although the branch length maintaining this relationship was very short, implying rapid diversification among the three subfamilies. Divergence time estimates were calculated from ML (local clock model) and Bayesian-dating method using a calibration point of 25 Myr (million years) ago for the divergence between Glis and Glirulus, and 55 Myr ago for the split between lineages of Gliridae and Sciuridae on the basis of fossil records. The results showed that each lineage of Graphiuros, Glis, Glirulus and Muscardinus dates from the Late Oligocene to the Early Miocene period, which is mostly in agreement with fossil records. Taking into account that warm climate harbouring a glirid-favoured forest dominated from Europe to Asia during this period, it is considered that this warm environment triggered the prosperity of the glirid species through the rapid diversification. Glirulus japonicas is suggested to be a relict of this ancient diversification during the warm period.
机译:我们检查了代表三个亚科(Glirinae,Graphiurinae和Leithiinae)的六个物种之间的系统发育关系,这些序列具有来自三个核蛋白编码基因(载脂蛋白B,APOB;光感受器类维生素A结合蛋白IRBP;重组激活基因1,RAG1)的序列。从最大简约(MP),最大似然(ML)和贝叶斯推断(BI)分析中重建的系统发育树显示,在强有力的支持下,Glirinae(Glis和Glirulus)和Leithiinae(Dryomys,Eliomys和Muscardinus)的单性得到了强有力的支持,尽管保持这种关系的分支长度很短,这意味着三个亚科之间迅速多样化。根据ML(本地时钟模型)和贝叶斯约会方法,使用25 Myr(百万年前)的标定点对Glis和Glirulus之间的差异进行了计算,并使用了55 Myr的校准点对Gliridae和Sciuridae的谱系进行了计算,得出了发散时间估计。根据化石记录。结果表明,Graphiuros,Glis,Glirulus和Muscardinus的每个谱系可追溯到渐新世晚期至中新世早期,这与化石记录基本一致。考虑到这段时期内温暖的气候由欧洲到亚洲占主导地位,这里有一个以滑行为主的森林,因此,这种温暖的环境通过迅速的多样化而引发了滑行物种的繁荣。刺槐被认为是温暖时期这种古老多样性的遗迹。

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