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直接优化、仿射间隙成本和节点稳定性。

Direct optimization, affine gap costs, and node stability.

作者信息

Aagesen Lone

机构信息

Division of Invertebrate Zoology, American Museum of Natural History, New York, NY 10024-5192, USA.

出版信息

Mol Phylogenet Evol. 2005 Sep;36(3):641-53. doi: 10.1016/j.ympev.2005.04.012.

Abstract

The outcome of a phylogenetic analysis based on DNA sequence data is highly dependent on the homology-assignment step and may vary with alignment parameter costs. Robustness to changes in parameter costs is therefore a desired quality of a data set because the final conclusions will be less dependent on selecting a precise optimal cost set. Here, node stability is explored in relationship to separate versus combined analysis in three different data sets, all including several data partitions. Robustness to changes in cost sets is measured as number of successive changes that can be made in a given cost set before a specific clade is lost. The changes are in all cases base change cost, gap penalties, and adding/removing/changing affine gap costs. When combining data partitions, the number of clades that appear in the entire parameter space is not remarkably increased, in some cases this number even decreased. However, when combining data partitions the trees from cost sets including affine gap costs were always more similar than the trees were from cost sets without affine gap costs. This was not the case when the data partitions were analyzed independently. When data sets were combined approximately 80% of the clades found under cost sets including affine gap costs resisted at least one change to the cost set.

摘要

基于DNA序列数据的系统发育分析结果高度依赖于同源性分配步骤,并且可能因比对参数成本而异。因此,对参数成本变化的稳健性是数据集所需的一个特性,因为最终结论将较少依赖于选择精确的最优成本集。在此,在三个不同的数据集中,探讨了节点稳定性与单独分析和组合分析的关系,所有数据集都包括几个数据分区。对成本集变化的稳健性通过在特定分支丢失之前给定成本集中可以进行的连续变化次数来衡量。这些变化在所有情况下都是碱基变化成本、空位罚分以及添加/移除/改变仿射空位成本。当组合数据分区时,出现在整个参数空间中的分支数量没有显著增加,在某些情况下这个数量甚至减少了。然而,当组合数据分区时,来自包含仿射空位成本的成本集的树总是比来自不包含仿射空位成本的成本集的树更相似。当独立分析数据分区时情况并非如此。当数据集组合时,在包含仿射空位成本的成本集下发现的约80%的分支至少能抵抗成本集的一次变化。

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