A preliminary framework for DNA barcoding, incorporating the multispecies coalescent


Autoria(s): Dowton, Mark; Meiklejohn, Kelly; Cameron, Stephen L.; Wallman, James F.
Data(s)

2014

Resumo

The capacity to identify an unknown organism using the DNA sequence from a single gene has many applications. These include the development of biodiversity inventories (Janzen et al. 2005), forensics (Meiklejohn et al. 2011), biosecurity (Armstrong and Ball 2005), and the identification of cryptic species (Smith et al. 2006). The popularity and widespread use (Teletchea 2010) of the DNA barcoding approach (Hebert et al. 2003), despite broad misgivings (e.g., Smith 2005; Will et al. 2005; Rubinoff et al. 2006), attest to this. However, one major shortcoming to the standard barcoding approach is that it assumes that gene trees and species trees are synonymous, an assumption that is known not to hold in many cases (Pamilo and Nei 1988; Funk and Omland 2003). Biological processes that violate this assumption include incomplete lineage sorting and interspecific hybridization (Funk and Omland 2003). Indeed, simulation studies indicate that the concatenation approach (in which these two processes are ignored) can lead to statistically inconsistent estimation of the species tree (Kubatko and Degnan 2007)...

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/73194/

Publicador

Oxford University Press

Relação

http://eprints.qut.edu.au/73194/3/73194_Authors_Final_Version.pdf

DOI:10.1093/sysbio/syu028

Dowton, Mark, Meiklejohn, Kelly, Cameron, Stephen L., & Wallman, James F. (2014) A preliminary framework for DNA barcoding, incorporating the multispecies coalescent. Systematic Biology, 63(4), pp. 639-644.

Direitos

Copyright 2014 Oxford University Press

Fonte

School of Earth, Environmental & Biological Sciences; Science & Engineering Faculty

Palavras-Chave #Framework #DNA Barcoding #Multispecies Coalescent #Gene Trees #Species Trees
Tipo

Journal Article