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用于高通量功能基因组学的水稻基因激活/敲除突变体资源。

A rice gene activation/knockout mutant resource for high throughput functional genomics.

作者信息

Hsing Yue-Ie, Chern Chyr-Guan, Fan Ming-Jen, Lu Po-Chang, Chen Ku-Ting, Lo Shuen-Fang, Sun Peng-Kai, Ho Shin-Lon, Lee Kuo-Wei, Wang Yi-Chieh, Huang Wen-Lii, Ko Swee-Suak, Chen Shu, Chen Jyh-Long, Chung Chun-I, Lin Yao-Cheng, Hour Ai-Ling, Wang Yet-Walt, Chang Ya-Chi, Tsai Min-Wei, Lin Yi-Show, Chen Yin-Chin, Yen Hsing-Mu, Li Charng-Pei, Wey Chiu-Kai, Tseng Ching-Shan, Lai Ming-Hsing, Huang Sheng-Chung, Chen Liang-Jwu, Yu Su-May

机构信息

Institute of Plant and Microbial Biology, Academia Sinica, Nankang, Taipei 115, Taiwan, ROC.

出版信息

Plant Mol Biol. 2007 Feb;63(3):351-64. doi: 10.1007/s11103-006-9093-z. Epub 2006 Nov 21.

Abstract

Using transfer DNA (T-DNA) with functions of gene trap and gene knockout and activation tagging, a mutant population containing 55,000 lines was generated. Approximately 81% of this population carries 1-2 T-DNA copies per line, and the retrotransposon Tos17 was mostly inactive in this population during tissue culture. A total of 11,992 flanking sequence tags (FSTs) have been obtained and assigned to the rice genome. T-DNA was preferentially ( approximately 80%) integrated into genic regions. A total of 19,000 FSTs pooled from this and another T-DNA tagged population were analyzed and compared with 18,000 FSTs from a Tos17 tagged population. There was difference in preference for integrations into genic, coding, and flanking regions, as well as repetitive sequences and centromeric regions, between T-DNA and Tos17; however, T-DNA integration was more evenly distributed in the rice genome than Tos17. Our T-DNA contains an enhancer octamer next to the left border, expression of genes within genetics distances of 12.5 kb was enhanced. For example, the normal height of a severe dwarf mutant, with its gibberellin 2-oxidase (GA2ox) gene being activated by T-DNA, was restored upon GA treatment, indicating GA2ox was one of the key enzymes regulating the endogenous level of GA. Our T-DNA also contains a promoterless GUS gene next to the right border. GUS activity screening facilitated identification of genes responsive to various stresses and those regulated temporally and spatially in large scale with high frequency. Our mutant population offers a highly valuable resource for high throughput rice functional analyses using both forward and reverse genetic approaches.

摘要

利用具有基因捕获、基因敲除和激活标签功能的转化DNA(T-DNA),构建了一个包含55000个株系的突变体群体。该群体中约81%的株系每个株系携带1-2个T-DNA拷贝,并且在组织培养过程中反转录转座子Tos17在这个群体中大多处于失活状态。总共获得了11992个侧翼序列标签(FST)并定位到水稻基因组上。T-DNA优先(约80%)整合到基因区域。对从这个群体和另一个T-DNA标签群体中汇集的总共19000个FST进行了分析,并与来自Tos17标签群体的18000个FST进行了比较。T-DNA和Tos17在整合到基因、编码和侧翼区域以及重复序列和着丝粒区域方面存在偏好差异;然而,T-DNA在水稻基因组中的整合比Tos17分布更均匀。我们的T-DNA在左边界旁边含有一个增强子八聚体,在遗传距离12.5 kb内的基因表达得到增强。例如,一个严重矮化突变体的正常株高在赤霉素(GA)处理后恢复,其赤霉素2-氧化酶(GA2ox)基因被T-DNA激活,表明GA2ox是调节GA内源水平的关键酶之一。我们的T-DNA在右边界旁边还含有一个无启动子的GUS基因。GUS活性筛选有助于大规模、高频地鉴定对各种胁迫有响应以及在时间和空间上受到调控的基因。我们的突变体群体为利用正向和反向遗传方法进行高通量水稻功能分析提供了非常有价值的资源。

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