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首页> 外文期刊>Plant Biotechnology Journal >Zinc finger artificial transcription factor-based nearest inactive analogue/nearest active analogue strategy used for the identification of plant genes controlling homologous recombination.
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Zinc finger artificial transcription factor-based nearest inactive analogue/nearest active analogue strategy used for the identification of plant genes controlling homologous recombination.

机译:锌指人工转录因子的最接近活性模拟/最接近的活性模拟策略用于鉴定控制同源重组的植物基因。

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摘要

In previous work, we selected a particular transcription factor, designated VP16-HRU, from a pool of zinc finger artificial transcription factors (ZF-ATFs) used for genome interrogation. When expressed in Arabidopsis thaliana under control of the ribosomal protein S5A promoter, the RPS5A::VP16-HRU construct led to a 200- to 300-fold increase in the frequency of somatic intrachromosomal homologous recombination (iHR). Because the expression of each ZF-ATF leads to a large number of transcriptional changes, we designed a strategy employing a collection of structurally similar ZF-ATFs to filter out the transcriptional changes relevant to the phenotype by deep sequencing. In that manner, 30 transcripts were found to be consistently induced in plants with enhanced homologous recombination (HR). For 25 of the cognate genes, their effect on the HR process was assessed using cDNA/gDNA expression constructs. For three genes, ectopic expression indeed led to enhanced iHR frequencies, albeit much lower than the frequency observed when a HR-inducing ZF-ATF was present. Altogether, our data demonstrate that despite the large number of transcriptional changes brought about by individual ZF-ATFs, causal changes can be identified. In our case, the picture emerged that a natural regulatory switch for iHR does not exist but that ZF-ATFs-like VP16-HRU act as an ectopic master switch, orchestrating the timely expression of a set of plant genes that each by themselves only have modest effects, but when acting together support an extremely high iHR frequency.
机译:在以前的工作中,我们选择了特定的转录因子,指定VP16-HRU,从用于基因组询问的锌手指人工转录因子(ZF-ATF)池中。当在核糖体蛋白S5a启动子的控制下在拟南芥拟南芥中表达时,RPS5A :: VP16-HRU构建体导致体细胞内囊肿骨甲同源重组(IHR)的频率增加200至300倍。因为每个ZF-ATF的表达导致大量的转录变化,所以我们设计了一种采用结构相似的ZF-ATF的集合的策略,以通过深度测序过滤出与表型相关的转录变化。以这种方式,发现30个转录物在具有增强的同源重组(HR)的植物中一致地诱导。对于25个同源基因,使用cDNA / GDNA表达构建体评估它们对HR过程的影响。对于三个基因,异位表达确实导致增强的IHR频率,尽管当存在HR诱导ZF-ATF时观察到的频率远远低得多。完全,我们的数据表明,尽管单个ZF-ATF带来的大量转录变化,但可以识别因果变化。在我们的情况下,该图片出现了IHR的自然调节开关不存在,但ZF-ATF样VP16-HRU充当异位主开关,协调一组植物基因的及时表达,每个植物基因本身只有适度的效果,但当行动时支持极高的IHR频率。

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