Age estimation for the genus Cymbidium (Orchidaceae: Epidendroideae) with implementation of fossil data calibration using molecular markers (ITS2 & matK) and phylogeographic inference from ancestral area reconstruction
Autor: | Pramod Tandon, Manish Debnath, Devendra Kumar Biswal, Ruchishree Konhar, Jean Valrie Marbaniang |
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Rok vydání: | 2016 |
Předmět: |
Genetic Markers
0301 basic medicine Time Factors Subfamily Cymbidium Epidendroideae Models Biological Biochemistry 03 medical and health sciences Monophyly Phylogenetics Genus DNA Ribosomal Spacer Endoribonucleases Botany Orchidaceae Molecular Biology Phylogeny Phylogenetic tree biology Fossils Bayes Theorem biology.organism_classification Nucleotidyltransferases Computer Science Applications Phylogeography 030104 developmental biology Calibration |
Zdroj: | Journal of Bioinformatics and Computational Biology. 14:1660001 |
ISSN: | 1757-6334 0219-7200 |
Popis: | Intercontinental dislocations between tropical regions harboring two-thirds of the flowering plants have always drawn attention from taxonomists and biogeographers. One such family belonging to angiosperms is Orchidaceae with an herbaceous habit and high species diversity in the tropics. Here, we investigate the evolutionary and biogeographical history of the genus Cymbidium, which represents a monophyletic subfamily (Epidendroideae) of the orchids and comprises 50 odd species that are distinctly distributed in tropical to temperate regions. Much is not known about correlations among the level of CAM activity (one of the photosynthetic pathways often regarded as an adaptation to water stress in land plants), habitat, life forms, and phylogenetic relationships of orchids from an evolutionary perspective. A relatively well-resolved and highly supported phylogeny for Cymbidium orchids is reconstructed based on sequence analysis of ITS2 and matK regions from the chloroplast DNA available in public repositories viz. GenBank at NCBI. This study examines a genus level analysis by integrating different molecular matrices to existing fossil data on orchids in a molecular Bayesian relaxed clock employed in BEAST and assessed divergence times for the genus Cymbidium with a focus on evolutionary history of photosynthetic characters. Our study has enabled age estimations (45Ma) as well as ancestral area reconstruction for the genus Cymbidium using BEAST by addition of previously analyzed two internal calibration points. |
Databáze: | OpenAIRE |
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