Ladevèze Véronique, Chaminade Nicole, Lemeunier Françoise, Periquet Georges, Aulard Sylvie
UMR 6187 CNRS, Institut de Physiologie et Biologie Cellulaires, Université de Poitiers, 86022, Poitiers Cedex, France.
Genetica. 2012 Sep;140(7-9):375-92. doi: 10.1007/s10709-012-9687-0. Epub 2012 Oct 31.
The hAT transposons, very abundant in all kingdoms, have a common evolutionary origin probably predating the plant-fungi-animal divergence. In this paper we present their general characteristics. Members of this superfamily belong to Class II transposable elements. hAT elements share transposase, short terminal inverted repeats and eight base-pairs duplication of genomic target. We focus on hAT elements in Drosophila, especially hobo. Its distribution, dynamics and impact on genome restructuring in laboratory strains as well as in natural populations are reported. Finally, the evolutionary history of hAT elements, their domestication and use as transgenic tools are discussed.
hAT转座子在所有生物界中都非常丰富,可能具有共同的进化起源,其时间可能早于植物、真菌和动物的分化。在本文中,我们介绍了它们的一般特征。这个超家族的成员属于II类转座元件。hAT元件共享转座酶、短末端反向重复序列和基因组靶标的八个碱基对重复。我们重点研究果蝇中的hAT元件,特别是hobo元件。报告了其在实验室菌株以及自然种群中的分布、动态变化及其对基因组重组的影响。最后,讨论了hAT元件的进化历史、它们的驯化过程以及作为转基因工具的用途。