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分子进化的小步骤在普遍的负选择下:密码子替换的近乎普遍规则。

Molecular Evolution in Small Steps under Prevailing Negative Selection: A Nearly Universal Rule of Codon Substitution.

机构信息

State Key Laboratory of Biocontrol, School of Life Sciences, Sun Yat-sen University, Guangzhou, China.

CAS Key Laboratory of Genomic and Precision Medicine, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing, China.

出版信息

Genome Biol Evol. 2019 Oct 1;11(10):2702-2712. doi: 10.1093/gbe/evz192.

Abstract

The widely accepted view that evolution proceeds in small steps is based on two premises: 1) negative selection acts strongly against large differences and 2) positive selection favors small-step changes. The two premises are not biologically connected and should be evaluated separately. We now extend a previous approach to studying codon evolution in the entire genome. Codon substitution rate is a function of the physicochemical distance between amino acids (AAs), equated with the step size of evolution. Between nine pairs of closely related species of plants, invertebrates, and vertebrates, the evolutionary rate is strongly and negatively correlated with a set of AA distances (ΔU, scaled to [0, 1]). ΔU, a composite measure of evolutionary rates across diverse taxa, is influenced by almost all of the 48 physicochemical properties used here. The new analyses reveal a crucial trend hidden from previous studies: ΔU is strongly correlated with the evolutionary rate (R2 > 0.8) only when the genes are predominantly under negative selection. Because most genes in most taxa are strongly constrained by negative selection, ΔU has indeed appeared to be a nearly universal measure of codon evolution. In conclusion, molecular evolution at the codon level generally takes small steps due to the prevailing negative selection. Whether positive selection may, or may not, follow the small-step rule is addressed in a companion study.

摘要

普遍接受的进化是逐步进行的观点基于两个前提

1)负选择强烈反对大的差异,2)正选择有利于小步变化。这两个前提在生物学上没有联系,应该分别评估。我们现在扩展了以前的方法来研究整个基因组中的密码子进化。密码子替换率是氨基酸(AA)之间物理化学距离的函数,等同于进化的步长。在九组密切相关的植物、无脊椎动物和脊椎动物物种之间,进化率与一组 AA 距离(ΔU,缩放到 [0,1])呈强烈负相关。ΔU 是跨越多种分类群的进化率的综合度量,受这里使用的 48 种物理化学性质的几乎所有性质的影响。新的分析揭示了一个隐藏在以前研究中的重要趋势:只有当基因主要受到负选择时,ΔU 才与进化率强烈相关(R2 > 0.8)。由于大多数分类群中的大多数基因都受到负选择的强烈限制,因此 ΔU 确实似乎是密码子进化的几乎普遍衡量标准。总之,由于普遍存在的负选择,密码子水平的分子进化通常采取小步骤。正选择是否遵循小步规则在一项伴随的研究中进行了探讨。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c78/6777424/16b388efc667/evz192f1.jpg

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