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山杨光周期途径的适应性进化。

Adaptive evolution of the Populus tremula photoperiod pathway.

机构信息

Umeå Plant Science Centre, Department of Ecology and Environmental Science, Umeå University, Umeå, Sweden.

出版信息

Mol Ecol. 2011 Apr;20(7):1463-74. doi: 10.1111/j.1365-294X.2011.05014.x. Epub 2011 Feb 11.

Abstract

Perennial plants monitor seasonal changes through changes in environmental conditions such as the quantity and quality of light and genes in the photoperiodic pathway are known to be involved in controlling these processes. Here, we examine 25 of genes from the photoperiod pathway in Populus tremula (Salicaceae) for signatures of adaptive evolution. Overall, levels of synonymous polymorphism in the 25 genes are lower than at control loci selected randomly from the genome. This appears primarily to be caused by lower levels of synonymous polymorphism in genes associated with the circadian clock. Natural selection appears to play an important role in shaping protein evolution at several of the genes in the photoperiod pathways, which is highlighted by the fact that approximately 40% of the genes from the photoperiod pathway have estimates of selection on nonsynonymous polymorphisms that are significantly different from zero. A surprising observation we make is that circadian clock-associated genes appear to be over-represented among the genes showing elevated rates of protein evolution; seven genes are evolving under positive selection and all but one of these genes are involved in the circadian clock of Populus.

摘要

多年生植物通过环境条件的变化来监测季节性变化,例如光的数量和质量,而光周期途径中的基因被认为参与控制这些过程。在这里,我们研究了 25 个来自白杨(杨柳科)光周期途径的基因,以寻找适应进化的特征。总的来说,25 个基因中的同义多态性水平低于从基因组中随机选择的对照基因。这主要是由于与生物钟相关的基因中的同义多态性水平较低所致。自然选择似乎在塑造光周期途径中几个基因的蛋白质进化中发挥了重要作用,这突出表现在大约 40%的光周期途径基因的非同义多态性选择估计值与零有显著差异。我们观察到一个令人惊讶的现象,即与生物钟相关的基因似乎在蛋白质进化率较高的基因中过度表达;有七个基因在正选择下进化,而这些基因中除了一个之外,都参与了杨树的生物钟。

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