Department of Life Sciences, Ben Gurion University of the Negev, Beer Sheva, Israel.
Genome Biol Evol. 2013;5(10):1792-9. doi: 10.1093/gbe/evt131.
Recently, we found dramatic mitochondrial DNA divergence of Israeli Chamaeleo chamaeleon populations into two geographically distinct groups. We aimed to examine whether the same pattern of divergence could be found in nuclear genes. However, no genomic resource is available for any chameleon species. Here we present the first chameleon transcriptome, obtained using deep sequencing (SOLiD). Our analysis identified 164,000 sequence contigs of which 19,000 yielded unique BlastX hits. To test the efficacy of our sequencing effort, we examined whether the chameleon and other available reptilian transcriptomes harbored complete sets of genes comprising known biochemical pathways, focusing on the nDNA-encoded oxidative phosphorylation (OXPHOS) genes as a model. As a reference for the screen, we used the human 86 (including isoforms) known structural nDNA-encoded OXPHOS subunits. Analysis of 34 publicly available vertebrate transcriptomes revealed orthologs for most human OXPHOS genes. However, OXPHOS subunit COX8 (Cytochrome C oxidase subunit 8), including all its known isoforms, was consistently absent in transcriptomes of iguanian lizards, implying loss of this subunit during the radiation of this suborder. The lack of COX8 in the suborder Iguania is intriguing, since it is important for cellular respiration and ATP production. Our sequencing effort added a new resource for comparative genomic studies, and shed new light on the evolutionary dynamics of the OXPHOS system.
最近,我们发现以色列变色蜥(Chamaeleo chamaeleon)种群的线粒体 DNA 发生了明显的分化,形成了两个在地理上截然不同的群体。我们的目的是研究这种分化模式是否也存在于核基因中。然而,目前还没有任何关于变色龙物种的基因组资源。在这里,我们展示了第一个变色龙转录组,该转录组是通过深度测序(SOLiD)获得的。我们的分析确定了 164000 个序列连续体,其中 19000 个序列连续体产生了独特的 BlastX 命中。为了检验我们测序工作的有效性,我们研究了变色龙和其他现有的爬行动物转录组是否包含组成已知生化途径的完整基因集,重点关注 nDNA 编码的氧化磷酸化(OXPHOS)基因作为模型。作为筛选的参考,我们使用了人类 86 个(包括同工型)已知的结构 nDNA 编码的 OXPHOS 亚基。对 34 个公开的脊椎动物转录组的分析显示,大多数人类 OXPHOS 基因都有同源物。然而,OXPHOS 亚基 COX8(细胞色素 C 氧化酶亚基 8),包括其所有已知的同工型,在鬣蜥目爬行动物的转录组中始终缺失,这意味着在这个亚目辐射过程中失去了这个亚基。COX8 在鬣蜥目中的缺失很有趣,因为它对细胞呼吸和 ATP 生成很重要。我们的测序工作为比较基因组研究增添了新的资源,并为 OXPHOS 系统的进化动态提供了新的认识。