Hamlet Michelle R Johnson, Yergeau Donald A, Kuliyev Emin, Takeda Masatoshi, Taira Masanori, Kawakami Koichi, Mead Paul E
Department of Pathology, St. Jude Children's Research Hospital, Memphis, Tennessee 38105, USA.
Genesis. 2006 Sep;44(9):438-45. doi: 10.1002/dvg.20234.
The diploid frog Xenopus tropicalis is becoming a powerful developmental genetic model system. Sequencing of the X. tropicalis genome is nearing completion and several labs are embarking on mutagenesis screens. We are interested in developing insertional mutagenesis strategies in X. tropicalis. Transposon-mediated insertional mutagenesis, once used exclusively in plants and invertebrate systems, is now more widely applicable to vertebrates. The first step in developing transposons as tools for mutagenesis is to demonstrate that these mobile elements function efficiently in the target organism. Here, we show that the Medaka fish transposon, Tol2, is able to stably integrate into the X. tropicalis genome and will serve as a powerful tool for insertional mutagenesis strategies in the frog.
二倍体青蛙热带爪蟾正成为一个强大的发育遗传模型系统。热带爪蟾基因组的测序工作即将完成,几个实验室正在着手进行诱变筛选。我们对开发热带爪蟾的插入诱变策略感兴趣。转座子介导的插入诱变,曾经仅用于植物和无脊椎动物系统,现在更广泛地应用于脊椎动物。将转座子开发为诱变工具的第一步是证明这些移动元件在目标生物体中能高效发挥作用。在这里,我们表明,青鳉鱼转座子Tol2能够稳定地整合到热带爪蟾基因组中,并将成为青蛙插入诱变策略的有力工具。