Raz E, van Luenen H G, Schaerringer B, Plasterk R H, Driever W
Department of Developmental Biology, Institute for Biology 1, University of Freiburg, Hauptstrasse 1, D-79104 Freiburg, Germany.
Curr Biol. 1998 Jan 15;8(2):82-8. doi: 10.1016/s0960-9822(98)70038-7.
Transposable elements of the Tc1/mariner family are found in many species of the animal kingdom. It has been suggested that the widespread distribution of this transposon family resulted from horizontal transmission among different species.
To test the ability of Tc1/mariner to cross species barriers, as well as to develop molecular genetic tools for studying zebrafish development, we determined the ability of the Tc3 transposon, a member of the Tc1/mariner family, to function in zebrafish. Tc3 transposons carrying sequences encoding the green fluorescent protein (GFP) were able to integrate in the fish genome by transposition. Integrated transposons expressed the GFP marker after germline transmission, and were capable of being mobilized upon introduction of transposase protein in trans.
Our findings support models of horizontal transmission of Tc1/mariner elements between species. The work also establishes the basis for a novel method of transposon-mediated genetic transformation and for transposon-mediated genetic screens in zebrafish and other organisms.
Tc1/水手家族的转座元件存在于动物界的许多物种中。有人提出,这个转座子家族的广泛分布是由于不同物种之间的水平转移所致。
为了测试Tc1/水手转座子跨越物种屏障的能力,以及开发用于研究斑马鱼发育的分子遗传工具,我们确定了Tc1/水手家族成员Tc3转座子在斑马鱼中的功能。携带编码绿色荧光蛋白(GFP)序列的Tc3转座子能够通过转座整合到鱼类基因组中。整合后的转座子在种系传递后表达GFP标记,并且在反式导入转座酶蛋白后能够被激活。
我们的研究结果支持了Tc1/水手元件在物种间水平转移的模型。这项工作还为斑马鱼和其他生物体中转座子介导的遗传转化新方法以及转座子介导的遗传筛选奠定了基础。