Davies T Jonathan, Savolainen Vincent
Department of Biology, University of Virginia, Charlottesville 22904, USA.
Evolution. 2006 Mar;60(3):476-83.
The neutral theory of molecular evolution predicts that rates of phenotypic change are largely independent from genotypic change. A recent study by Bromham et al. (2002) confirmed this expectation, finding no evidence for correlated phenotypic and molecular evolutionary rates in animals. We reevaluate this hypothesis, sampling at different taxonomic levels in plants and animals, using Bayesian inference to reconstruct phylogenetic trees and estimate rates of molecular evolution. We use independent contrasts in branch lengths to maximize the information extracted from each of the trees and nodal posterior probabilities to assess the influence of phylogenetic error. Our results indicate that in vascular plants between 2% and 11% of the variation in phenotypic rates of change can be explained by the rate of genotypic change. These results may be explained by the idea that processes that affect general evolutionary rates, such as body size, may also be expected to influence rates of morphological change.
分子进化的中性理论预测,表型变化的速率在很大程度上独立于基因型变化。Bromham等人(2002年)最近的一项研究证实了这一预期,未发现动物中表型和分子进化速率相关的证据。我们重新评估这一假设,在植物和动物的不同分类水平上进行抽样,使用贝叶斯推断来重建系统发育树并估计分子进化速率。我们利用分支长度的独立对比来最大化从每棵树中提取的信息,并利用节点后验概率来评估系统发育误差的影响。我们的结果表明,在维管植物中,表型变化速率中2%至11%的变异可以由基因型变化速率来解释。这些结果可以用这样一种观点来解释,即影响一般进化速率的过程,如体型大小,也可能会影响形态变化的速率。