TY - JOUR
T1 - Principal component analysis and the locus of the FrCrossed D sign©chet mean in the space of phylogenetic trees
AU - Nye, Tom M.W.
AU - Tang, Xiaoxian
AU - Weyenberg, Grady
AU - Yoshida, Ruriko
N1 - Publisher Copyright:
© 2017 Biometrika Trust.
PY - 2017/12/1
Y1 - 2017/12/1
N2 - Evolutionary relationships are represented by phylogenetic trees, and a phylogenetic analysis of gene sequences typically produces a collection of these trees, one for each gene in the analysis. Analysis of samples of trees is difficult due to the multi-dimensionality of the space of possible trees. In Euclidean spaces, principal component analysis is a popular method of reducing high-dimensional data to a low-dimensional representation that preserves much of the sample's structure. However, the space of all phylogenetic trees on a fixed set of species does not form a Euclidean vector space, and methods adapted to tree space are needed. Previous work introduced the notion of a principal geodesic in this space, analogous to the first principal component. Here we propose a geometric object for tree space similar to the kth principal component in Euclidean space: The locus of the weighted Fréchet mean of k + 1 vertex trees when the weights vary over the k-simplex. We establish some basic properties of these objects, in particular showing that they have dimension k, and propose algorithms for projection onto these surfaces and for finding the principal locus associated with a sample of trees. Simulation studies demonstrate that these algorithms perform well, and analyses of two datasets, containing Apicomplexa and African coelacanth genomes respectively, reveal important structure from the second principal components.
AB - Evolutionary relationships are represented by phylogenetic trees, and a phylogenetic analysis of gene sequences typically produces a collection of these trees, one for each gene in the analysis. Analysis of samples of trees is difficult due to the multi-dimensionality of the space of possible trees. In Euclidean spaces, principal component analysis is a popular method of reducing high-dimensional data to a low-dimensional representation that preserves much of the sample's structure. However, the space of all phylogenetic trees on a fixed set of species does not form a Euclidean vector space, and methods adapted to tree space are needed. Previous work introduced the notion of a principal geodesic in this space, analogous to the first principal component. Here we propose a geometric object for tree space similar to the kth principal component in Euclidean space: The locus of the weighted Fréchet mean of k + 1 vertex trees when the weights vary over the k-simplex. We establish some basic properties of these objects, in particular showing that they have dimension k, and propose algorithms for projection onto these surfaces and for finding the principal locus associated with a sample of trees. Simulation studies demonstrate that these algorithms perform well, and analyses of two datasets, containing Apicomplexa and African coelacanth genomes respectively, reveal important structure from the second principal components.
KW - Fréchet mean
KW - Phylogenetic tree
KW - Principal component analysis
KW - Tree space
UR - https://www.scopus.com/pages/publications/85039170030
U2 - 10.1093/biomet/asx047
DO - 10.1093/biomet/asx047
M3 - 文章
AN - SCOPUS:85039170030
SN - 0006-3444
VL - 104
SP - 901
EP - 922
JO - Biometrika
JF - Biometrika
IS - 4
ER -