Departament de Genètica & Institut de Recerca en Biodiversitat (Irbio), Universitat de Barcelona, Barcelona, Spain.
Department of Biochemistry, Université de Montréal, H3C 3J7 Montréal, Canada.
Mol Biol Evol. 2011 Mar;28(3):1241-1254. doi: 10.1093/molbev/msq309. Epub 2010 Nov 17.
How animals (metazoans) originated from their single-celled ancestors remains a major question in biology. As transcriptional regulation is crucial to animal development, deciphering the early evolution of associated transcription factors (TFs) is critical to understanding metazoan origins. In this study, we uncovered the repertoire of 17 metazoan TFs in the amoeboid holozoan Capsaspora owczarzaki, a representative of a unicellular lineage that is closely related to choanoflagellates and metazoans. Phylogenetic and comparative genomic analyses with the broadest possible taxonomic sampling allowed us to formulate new hypotheses regarding the origin and evolution of developmental metazoan TFs. We show that the complexity of the TF repertoire in C. owczarzaki is strikingly high, pushing back further the origin of some TFs formerly thought to be metazoan specific, such as T-box or Runx. Nonetheless, TF families whose beginnings antedate the origin of the animal kingdom, such as homeodomain or basic helix-loop-helix, underwent significant expansion and diversification along metazoan and eumetazoan stems.
动物(后生动物)如何从其单细胞祖先起源仍然是生物学中的一个主要问题。由于转录调控对动物发育至关重要,因此解析相关转录因子(TFs)的早期进化对于理解后生动物的起源至关重要。在这项研究中,我们在变形虫真核生物Capsaspora owczarzaki 中揭示了 17 种后生动物 TF 的组成,Capsaspora owczarzaki 是与领鞭毛虫和后生动物密切相关的单细胞谱系的代表。与尽可能广泛的分类采样进行系统发育和比较基因组分析使我们能够提出关于发育后生动物 TF 起源和进化的新假设。我们表明,C. owczarzaki 中 TF 库的复杂性非常高,进一步推回了一些以前被认为是后生动物特有的 TF(如 T 盒或 Runx)的起源。尽管如此,其起源早于动物王国的 TF 家族,如同源域或碱性螺旋-环-螺旋,沿着后生动物和真后生动物的分支经历了显著的扩张和多样化。