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Patterns of variation of mutation rates of mitochondrial and nuclear genes of gastropods

机译:胃肠杆菌线粒体和核基因突变率变异模式

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Although mitochondrial DNA (mtDNA) of many animals tends to mutate at higher rates than nuclear DNA (nuDNA), a recent survey of mutation rates of various animal groups found that the gastropod family Bradybaenidae (suborder Helicina) shows a nearly 40-fold difference in mutation rates of mtDNA ( $$mu$$ m) and nuDNA ( $$mu$$ n), while other gastropod taxa exhibit only two to five-fold differences. To determine if Bradybaenidae represents an outlier within Gastropoda, I compared estimated values of $$mu$$ m/ $$mu$$ n of additional gastropod groups. In particular, I reconstructed mtDNA and nuDNA gene trees of 121 datasets that include members of various clades contained within the gastropod subclasses Caenogastropoda, Heterobranchia, Patellogastropoda, and Vetigastropoda and then used total branch length estimates of these gene trees to infer $$mu$$ m/ $$mu$$ n. Estimated values of $$mu$$ m/ $$mu$$ n range from 1.4 to 91.9. Datasets that exhibit relatively large values of $$mu$$ m/ $$mu$$ n (i.e., ?20), however, show relatively lower estimates of $$mu$$ n (and not elevated $$mu$$ m) in comparison to groups with lower values. These datasets also tend to contain sequences of recently diverged species. In addition, datasets with low levels of phylogenetic breadth (i.e., contain members of single genera or families) exhibit higher values of $$mu$$ m/ $$mu$$ n than those with high levels (i.e., those that contain representatives of single superfamilies or higher taxonomic ranks). Gastropods exhibit considerable variation in estimates of $$mu$$ m/ $$mu$$ n. Large values of $$mu$$ m/ $$mu$$ n that have been calculated for Bradybaenidae and other gastropod taxa may be overestimated due to possible sampling artifacts or processes that depress estimates of total molecular divergence of nuDNA in groups that recently diversified.
机译:尽管许多动物的线粒体DNA(MTDNA)倾向于比核DNA(NUDNA)更高的速率突变,但最近的各种动物组的突变率调查发现,胃肠杆系列Bradybaenidae(亚级Helicina)显示出近40倍的差异MTDNA($$ MU $$ M)和NUDNA($$ mu $$ n)的突变率,而其他美食群差异只有两到五倍的差异。为了确定Bradybaenidae是否代表胃肠杆菌内的异常值,我将估计的$$ mu $$ m / $$ mu $$ n的估计值进行比较。特别地,我重建了121个数据集的MTDNA和NUDNA基因树木,包括胃肠杆子类亚麻组织中含有的各种蛹的成员,veterobranchia,Patellogastrogoda和Vetigabropoda,然后使用这些基因树的总分支长度估计来推断出$$ mu $ $ m / $$ mu $$ n。 $$ mu $$ m / $$ mu $$ n的估计值从1.4到91.9。然而,数据集具有相对较大的$$ Mu $$ M / $$ MU $$ n(即,&?20),显示相对较低的$$ mu $$ n估计(而未提升$ $ mu $$ m)与具有较低价值的小组相比。这些数据集还倾向于含有最近分叉物种的序列。此外,具有低水平的系统发育宽度(即,包含单属或家庭成员)的数据集表现出较高的$$ mu $$ m / $$ mu $$ n的价值,而不是高水平的价值(即那些包含单一超级小心或更高的分类法规的代表)。胃料在$$ mu $$ m / $$$$ n估计中表现出相当大的变化。由于可能的采样伪像或过程,可以高估为Bradybaenidae和其他胃料出分类群的大量价值,这是用于Bradybaenidae和其他美食队的胃排,可能会被抑制少数最近多样化。

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