Dechaud Corentin, Volff Jean-Nicolas, Schartl Manfred, Naville Magali
1Institut de Genomique Fonctionnelle de Lyon, Univ Lyon, CNRS UMR 5242, Ecole Normale Superieure de Lyon, Universite Claude Bernard Lyon 1, 46 allee d'Italie, F-69364 Lyon, France.
2Entwicklungsbiochemie, Biozentrum, Universität Würzburg, Würzburg, Germany.
Mob DNA. 2019 Nov 3;10:42. doi: 10.1186/s13100-019-0185-0. eCollection 2019.
Transposable elements are endogenous DNA sequences able to integrate into and multiply within genomes. They constitute a major source of genetic innovations, as they can not only rearrange genomes but also spread ready-to-use regulatory sequences able to modify host gene expression, and even can give birth to new host genes. As their evolutionary success depends on their vertical transmission, transposable elements are intrinsically linked to reproduction. In organisms with sexual reproduction, this implies that transposable elements have to manifest their transpositional activity in germ cells or their progenitors. The control of sexual development and function can be very versatile, and several studies have demonstrated the implication of transposable elements in the evolution of sex. In this review, we report the functional and evolutionary relationships between transposable elements and sexual reproduction in animals. In particular, we highlight how transposable elements can influence expression of sexual development genes, and how, reciprocally, they are tightly controlled in gonads. We also review how transposable elements contribute to the organization, expression and evolution of sexual development genes and sex chromosomes. This underscores the intricate co-evolution between host functions and transposable elements, which regularly shift from a parasitic to a domesticated status useful to the host.
转座元件是能够整合到基因组中并在基因组内增殖的内源性DNA序列。它们构成了遗传创新的主要来源,因为它们不仅可以重排基因组,还能传播可用于修饰宿主基因表达的调控序列,甚至可以产生新的宿主基因。由于它们的进化成功取决于垂直传递,转座元件与繁殖有着内在联系。在有性生殖的生物体中,这意味着转座元件必须在生殖细胞或其祖细胞中表现出转座活性。对性发育和功能的控制可能非常多样,并且多项研究已经证明转座元件参与了性别的进化。在这篇综述中,我们报告了转座元件与动物有性生殖之间的功能和进化关系。特别地,我们强调了转座元件如何影响性发育基因的表达,以及相反地,它们在性腺中是如何受到严格控制的。我们还综述了转座元件如何促进性发育基因和性染色体的组织、表达及进化。这凸显了宿主功能与转座元件之间复杂的共同进化,转座元件经常从寄生状态转变为对宿主有用的驯化状态。