Balakirev Evgeniy S, Chechetkin Vladimir R, Lobzin Vasily V, Ayala Francisco J
Department of Ecology and Evolutionary Biology, University of California, Irvine, CA, USA,
Methods Mol Biol. 2014;1167:41-62. doi: 10.1007/978-1-4939-0835-6_4.
Spectral entropy and GC content analyses reveal comprehensive structural features of DNA sequences. To illustrate the significance of these features, we analyze the β-esterase gene cluster, including the Est-6 gene and the ψEst-6 putative pseudogene, in seven species of the Drosophila melanogaster subgroup. The spectral entropies show distinctly lower structural ordering for ψEst-6 than for Est-6 in all species studied. However, entropy accumulation is not a completely random process for either gene and it shows to be nucleotide dependent. Furthermore, GC content in synonymous positions is uniformly higher in Est-6 than in ψEst-6, in agreement with the reduced GC content generally observed in pseudogenes and nonfunctional sequences. The observed differences in entropy and GC content reflect an evolutionary shift associated with the process of pseudogenization and subsequent functional divergence of ψEst-6 and Est-6 after the duplication event. The data obtained show the relevance and significance of entropy and GC content analyses for pseudogene identification and for the comparative study of gene-pseudogene evolution.
光谱熵和GC含量分析揭示了DNA序列的综合结构特征。为了说明这些特征的重要性,我们分析了黑腹果蝇亚组七种物种中的β - 酯酶基因簇,包括Est - 6基因和ψEst - 6假定的假基因。在所研究的所有物种中,ψEst - 6的光谱熵显示出比Est - 6明显更低的结构有序性。然而,对于这两个基因而言,熵积累并非完全随机过程,且显示出核苷酸依赖性。此外,Est - 6中同义位置的GC含量普遍高于ψEst - 6,这与假基因和无功能序列中普遍观察到的GC含量降低一致。观察到的熵和GC含量差异反映了与假基因化过程以及复制事件后ψEst - 6和Est - 6随后的功能分化相关的进化转变。所获得的数据表明了熵和GC含量分析对于假基因鉴定以及基因 - 假基因进化比较研究的相关性和重要性。