Dubois Emeline, Bischerour Julien, Marmignon Antoine, Mathy Nathalie, Régnier Vinciane, Bétermier Mireille
CNRS, Centre de Génétique Moléculaire, UPR3404, 1 Avenue de la Terrasse, 91198 Gif-sur-Yvette Cedex, France.
Int J Evol Biol. 2012;2012:436196. doi: 10.1155/2012/436196. Epub 2012 Jul 22.
Sequences related to transposons constitute a large fraction of extant genomes, but insertions within coding sequences have generally not been tolerated during evolution. Thanks to their unique nuclear dimorphism and to their original mechanism of programmed DNA elimination from their somatic nucleus (macronucleus), ciliates are emerging model organisms for the study of the impact of transposable elements on genomes. The germline genome of the ciliate Paramecium, located in its micronucleus, contains thousands of short intervening sequences, the IESs, which interrupt 47% of genes. Recent data provided support to the hypothesis that an evolutionary link exists between Paramecium IESs and Tc1/mariner transposons. During development of the macronucleus, IESs are excised precisely thanks to the coordinated action of PiggyMac, a domesticated piggyBac transposase, and of the NHEJ double-strand break repair pathway. A PiggyMac homolog is also required for developmentally programmed DNA elimination in another ciliate, Tetrahymena. Here, we present an overview of the life cycle of these unicellular eukaryotes and of the developmentally programmed genome rearrangements that take place at each sexual cycle. We discuss how ancient domestication of a piggyBac transposase might have allowed Tc1/mariner elements to spread throughout the germline genome of Paramecium, without strong counterselection against insertion within genes.
与转座子相关的序列在现存基因组中占很大比例,但在进化过程中,编码序列内的插入通常不被容忍。由于其独特的核二态性以及从其体细胞核(大核)中进行程序性DNA消除的原始机制,纤毛虫正在成为研究转座元件对基因组影响的新兴模式生物。纤毛虫草履虫的种系基因组位于其微核中,包含数千个短间隔序列,即IESs,它们打断了47%的基因。最近的数据支持了这样一种假设,即草履虫IESs与Tc1/水手转座子之间存在进化联系。在大核发育过程中,由于驯化的piggyBac转座酶PiggyMac和非同源末端连接双链断裂修复途径的协同作用,IESs被精确切除。另一种纤毛虫四膜虫在发育程序性DNA消除过程中也需要PiggyMac同源物。在这里,我们概述了这些单细胞真核生物的生命周期以及每个性周期发生的发育程序性基因组重排。我们讨论了piggyBac转座酶的古老驯化可能如何使Tc1/水手元件在草履虫的种系基因组中传播,而不会对基因内的插入产生强烈的反选择。