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密码子使用分析揭示了更大采样规模下马缨丹目植物质体基因的进化模式。

Codon Usage Analyses Reveal the Evolutionary Patterns among Plastid Genes of Saxifragales at a Larger-Sampling Scale.

机构信息

Suzhou Polytechnic Institute of Agriculture, Suzhou 215000, China.

Anhui Provincial Key Laboratory of the Conservation and Exploitation of Biological Resources, College of Life Sciences, Anhui Normal University, Wuhu 241000, China.

出版信息

Genes (Basel). 2023 Mar 11;14(3):694. doi: 10.3390/genes14030694.

Abstract

Saxifragales is a 15-family order of early-divergent Eudicots with a rich morphological diversity and an ancient rapid radiation. Codon usage bias (CUB) analyses have emerged as an essential tool for understanding the evolutionary dynamics in genes. Thus far, the codon utilization patterns had only been reported in four separate genera within Saxifragales. This study provides a comprehensive assessment of the codon manipulation based on 50 plastid genes, covering 11 constituent families at a larger sampling scale. Our results first showed a high preference for AT bases and AT-ending codons. We then used effective number of codons (ENC) to assess a range of codon bias levels in the plastid genes. We also detected high-informative intrafamilial differences of ENC in three families. Subsequently, parity rule 2 (PR2) plot analyses revealed both family-unique and order-shared bias patterns. Most importantly, the ENC plots and neutrality analyses collectively supported the dominant roles of selection in the CUB of Saxifragales plastid genes. Notably, the phylogenetic affinities inferred by both ML and BI methods were consistent with each other, and they all comprised two primary clades and four subclades. These findings significantly enhance our understanding of the evolutionary processes of the Saxifrage order, and could potentially inspire more CUB analyses at higher taxonomic levels.

摘要

虎耳草目是一个具有丰富形态多样性和古老快速辐射的早分歧真双子叶植物 15 科目。密码子使用偏性(CUB)分析已成为理解基因进化动态的重要工具。迄今为止,仅在虎耳草目中的四个独立属中报道了密码子利用模式。本研究基于 50 个质体基因,涵盖 11 个组成科,在更大的采样规模上,对基于密码子的操纵进行了全面评估。我们的结果首先显示出对 AT 碱基和以 AT 结尾的密码子的高度偏好。然后,我们使用有效密码子数(ENC)来评估质体基因中一系列不同的密码子偏性水平。我们还检测到三个科内的 ENC 具有高信息量的家族内差异。随后,奇偶校验规则 2(PR2)图谱分析揭示了家族特有的和目共享的偏性模式。最重要的是,ENC 图谱和中性分析共同支持选择在虎耳草目质体基因的 CUB 中起主导作用。值得注意的是,ML 和 BI 方法推断的系统发育关系彼此一致,它们都包括两个主要的分支和四个亚分支。这些发现显著提高了我们对虎耳草目进化过程的理解,并可能激发在更高的分类学水平上进行更多的 CUB 分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/198a/10048229/f61a772fc421/genes-14-00694-g001.jpg

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