Department of Biology, Barnard College, Columbia University, 3009 Broadway, New York, NY 10027, USA.
Genes (Basel). 2023 Jul 22;14(7):1492. doi: 10.3390/genes14071492.
Mutations and subsequent repair processes are known to be strongly context-dependent in the flowering-plant chloroplast genome. At least six flanking bases, three on each side, can have an influence on the relative rates of different types of mutation at any given site. In this analysis, examine context and substitution at noncoding and fourfold degenerate coding sites in gymnosperm DNA. The sequences are analyzed in sets of three, allowing the inference of the substitution direction and the generation of context-dependent rate matrices. The size of the dataset limits the analysis to the tetranucleotide context of the sites, but the evidence shows that there are significant contextual effects, with patterns that are similar to those observed in angiosperms. These effects most likely represent an influence on the underlying mutation/repair dynamics. The data extend the plastome lineages that feature very complex patterns of mutation, which can have significant effects on the evolutionary dynamics of the chloroplast genome.
在开花植物叶绿体基因组中,突变及其后续修复过程已知具有强烈的上下文依赖性。在给定位置,至少有六个侧翼碱基(每侧三个)会影响不同类型突变的相对速率。在这项分析中,我们研究了裸子植物 DNA 中非编码和四倍简并编码位点的上下文和取代情况。这些序列按三组进行分析,允许推断取代方向并生成上下文相关的速率矩阵。数据集的大小限制了对这些位点的四核苷酸上下文的分析,但证据表明存在显著的上下文效应,其模式与在被子植物中观察到的模式相似。这些效应很可能代表对潜在突变/修复动力学的影响。这些数据扩展了具有非常复杂突变模式的质体谱系,这些模式可能对叶绿体基因组的进化动态产生重大影响。