Hirochika H
Department of Molecular Genetics, National Institute of Agrobiological Resources, Tsukuba, 305-8602, Ibaraki, Japan.
Curr Opin Plant Biol. 2001 Apr;4(2):118-22. doi: 10.1016/s1369-5266(00)00146-1.
The ongoing international efforts of the Rice Genomic Sequencing Project have already generated a large amount of sequence data. The next important challenge will be to construct saturation mutant lines for the functional analysis of all of the genes revealed by this effort in the context of the rice plant as a whole. Recently, the endogenous retrotransposon Tos17 has been shown to be an efficient insertional mutagen. Considering the ease of mutagenesis with Tos17 and its multiple-copy nature, saturation mutagenesis with this retrotransposon should be feasible in rice. Ongoing reverse-genetics studies, such as the PCR-screening of mutants and cataloguing of mutants by sequencing Tos17-insertion sites, as well as traditional forward-genetics studies, have clearly demonstrated that the Tos17 system can significantly contribute to the functional genomics of rice.
水稻基因组测序计划正在进行的国际合作已经产生了大量的序列数据。下一个重要挑战将是构建饱和突变体系,以便在水稻植株整体的背景下对该计划所揭示的所有基因进行功能分析。最近,内源反转录转座子Tos17已被证明是一种有效的插入诱变剂。鉴于利用Tos17进行诱变操作简便且具有多拷贝特性,利用这种反转录转座子进行饱和诱变在水稻中应该是可行的。正在进行的反向遗传学研究,如通过PCR筛选突变体以及对Tos17插入位点进行测序来编目突变体,还有传统的正向遗传学研究,都清楚地表明Tos17系统能够为水稻功能基因组学做出重大贡献。