Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, NY 14853-2701, USA.
Evol Bioinform Online. 2007 Feb 14;2:273-6.
Rates of species origination and extinction can vary over time during evolutionary radiations, and it is possible to reconstruct the history of diversification using molecular phylogenies of extant taxa only. Maximum likelihood methods provide a useful framework for inferring temporal variation in diversification rates. LASER is a package for the R programming environment that implements maximum likelihood methods based on the birth-death process to test whether diversification rates have changed over time. LASER contrasts the likelihood of phylogenetic data under models where diversification rates have changed over time to alternative models where rates have remained constant over time. Major strengths of the package include the ability to detect temporal increases in diversification rates and the inference of diversification parameters under multiple rate-variable models of diversification. The program and associated documentation are freely available from the R package archive at http://cran.r-project.org.
物种的起源和灭绝速率在进化辐射过程中可能会随时间而变化,仅使用现存分类单元的分子系统发育重建多样化历史是有可能的。最大似然法为推断多样化速率的时间变化提供了一个有用的框架。LASER 是一个用于 R 编程语言环境的包,它实现了基于出生-死亡过程的最大似然法,用于检验多样化速率是否随时间而变化。LASER 将在多样化速率随时间变化的模型下的系统发育数据的似然度与在多样化速率随时间保持不变的替代模型下的似然度进行对比。该软件包的主要优点包括:能够检测多样化速率的时间增长,以及在多样化的多种速率变化模型下对多样化参数进行推断。程序及其相关文档可从 http://cran.r-project.org 上的 R 软件包档案中免费获得。