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首页> 外文期刊>Molecular phylogenetics and evolution >Variation in Modes and Rates of Evolution in Nuclear and Mitochondrial Ribosomal DNA in the Mushroom Genus Amanita (Agaricales, Basidiomycota): Phylogenetic Implications
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Variation in Modes and Rates of Evolution in Nuclear and Mitochondrial Ribosomal DNA in the Mushroom Genus Amanita (Agaricales, Basidiomycota): Phylogenetic Implications

机译:蘑菇鹅膏菌属(Agaricales,Basidiomycota)中核和线粒体核糖体DNA的模式和进化速率的变化:系统发育学意义。

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摘要

Modes and rates of molecular evolution, and congruence and combinability for phylogenetic reconstruction, of portions of the nuclear large ribosomal subunit (nLSU-rDNA) and mitochondrial small subunit (mtSSU-rDNA) genes were investigated in the mushroom genus Amanita. The AT content was higher in the mtSSU-rDNA than in the nLSU-rDNA. A transition bias in which AT substitutions were as frequent as transitions was present in the mtSSU-rDNA but not in the nLSU-rDNA. Among-sites rate variation in nucleotide substitutions at variable sites was present in the nLSU-rDNA but not in the mtSSU-rDNA. Likelihood ratio tests indicated very different models of evolution for the two molecules. A molecular clock could be rejected for both data sets. Rates of molecular evolution in the two molecules were uncoupled: faster evolutionary rates in the mtSSU-rDNA nd nLSU-rDNA were not observed for the same taxa. In separate phylogenetic analyses, the nLSU-rDNA data set had higher phylogenetic resolution. The partition homogeneity test and statistical bootstrap support for branches indicated absence of conflict in the phylogenetic signal in the two data sets; however, tree topologies produced from the separate data sets were not congruent. Heterogeneity in modes and rates of evolution in the two molecules pose difficulties for a combined analysis of the two data sets: the use of equally weighted parsimony is not fully satisfactory when rate heterogeneity is present, and it is impractical to determine a model for maximum-likelihood analysis that fits simultaneously two heterogeneous data sets. Overall topologies produced from either the separated or the combined analyses using various tree reconstruction methods were identical for nearly all statistically significant branches.
机译:在蘑菇属鹅膏菌属中研究了核大核糖体亚基(nLSU-rDNA)和线粒体小亚基(mtSSU-rDNA)基因的部分分子进化的模式和速率,以及系统重建的一致性和可组合性。 mtSSU-rDNA中的AT含量高于nLSU-rDNA中的AT含量。在mtSSU-rDNA中存在AT替换与转换一样频繁的过渡偏见,但在nLSU-rDNA中却没有。 nLSU-rDNA中存在可变位点核苷酸取代的位点间速率变化,而mtSSU-rDNA中不存在。似然比测试表明两种分子的进化模型非常不同。两个数据集都可能拒绝使用分子时钟。这两个分子的分子进化速率是不相关的:对于同一类群,在mtSSU-rDNA和nLSU-rDNA中未观察到更快的进化速率。在单独的系统发育分析中,nLSU-rDNA数据集具有较高的系统发育分辨率。分区均一性测试和对分支的统计引导程序支持表明两个数据集的系统发生信号中没有冲突。但是,从单独的数据集生成的树形拓扑并不完全一致。这两种分子在模式和进化速率上的异质性难以对两个数据集进行综合分析:当存在速率异质性时,使用同等加权的简约不能完全令人满意,并且要确定最大-同时适用于两个异构数据集的似然分析。对于几乎所有具有统计意义的分支,使用各种树重构方法从分离或组合分析中产生的总体拓扑都相同。

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