TY - JOUR
T1 - Plastid genome comparative and phylogenetic analyses of the key genera in fagaceae
T2 - Highlighting the effect of codon composition bias in phylogenetic inference
AU - Yang, Yanci
AU - Zhu, Juan
AU - Feng, Li
AU - Zhou, Tao
AU - Bai, Guoqing
AU - Yang, Jia
AU - Zhao, Guifang
N1 - Publisher Copyright:
© 2018 Yang, Zhu, Feng, Zhou, Bai, Yang and Zhao.
PY - 2018/2/1
Y1 - 2018/2/1
N2 - Fagaceae is one of the largest and economically important taxa within Fagales. Considering the incongruence among inferences from plastid and nuclear genes in the previous Fagaceae phylogeny studies, we assess the performance of plastid phylogenomics in this complex family. We sequenced and assembled four complete plastid genomes (Fagus engleriana, Quercus spinosa, Quercus aquifolioides, and Quercus glauca) using reference-guided assembly approach. All of the other 12 published plastid genomes in Fagaceae were retrieved for genomic analyses (including repeats, sequence divergence and codon usage) and phylogenetic inference. The genomic analyses reveal that plastid genomes in Fagaceae are conserved. Comparing the phylogenetic relationships of the key genera in Fagaceae inferred fromdifferent codon positions and gene function datasets, we found that the first two codon sites dataset recovered nearly all relationships and received high support. Thus, the result suggested that codon composition bias had great influence on Fagaceae phylogenetic inference. Our study not only provides basic understanding of Fagaceae plastid genomes, but also illuminates the effectiveness of plastid phylogenomics in resolving relationships of this intractable family.
AB - Fagaceae is one of the largest and economically important taxa within Fagales. Considering the incongruence among inferences from plastid and nuclear genes in the previous Fagaceae phylogeny studies, we assess the performance of plastid phylogenomics in this complex family. We sequenced and assembled four complete plastid genomes (Fagus engleriana, Quercus spinosa, Quercus aquifolioides, and Quercus glauca) using reference-guided assembly approach. All of the other 12 published plastid genomes in Fagaceae were retrieved for genomic analyses (including repeats, sequence divergence and codon usage) and phylogenetic inference. The genomic analyses reveal that plastid genomes in Fagaceae are conserved. Comparing the phylogenetic relationships of the key genera in Fagaceae inferred fromdifferent codon positions and gene function datasets, we found that the first two codon sites dataset recovered nearly all relationships and received high support. Thus, the result suggested that codon composition bias had great influence on Fagaceae phylogenetic inference. Our study not only provides basic understanding of Fagaceae plastid genomes, but also illuminates the effectiveness of plastid phylogenomics in resolving relationships of this intractable family.
KW - Codon composition bias
KW - Fagaceae
KW - Phylogenomics
KW - Plastid genome
KW - Topological incongruence
UR - https://www.scopus.com/pages/publications/85043326026
U2 - 10.3389/fpls.2018.00082
DO - 10.3389/fpls.2018.00082
M3 - 文章
AN - SCOPUS:85043326026
SN - 1664-462X
VL - 9
JO - Frontiers in Plant Science
JF - Frontiers in Plant Science
M1 - 82
ER -