Abranches Rita, Shultz Randall W, Thompson William F, Allen George C
North Carolina State University, Department of Crop Science, Box 7620, Raleigh, North Carolina 27695-7620, USA.
Plant Biotechnol J. 2005 Sep;3(5):535-43. doi: 10.1111/j.1467-7652.2005.00144.x.
Transgene silencing has been shown to be associated with strong promoters, but it is not known whether the propensity for silencing is caused by the level of transcription, or some other property of the promoter. If transcriptional activity fosters silencing, then transgenes with inducible promoters may be less susceptible to silencing. To test this idea, a doxycycline-inducible luciferase transgene was transformed into an NT1 tobacco suspension culture cell line that constitutively expressed the tetracycline repressor. The inducible luciferase gene was flanked by tobacco Rb7 matrix attachment regions (MAR) or spacer control sequences in order to test the effects of MARs in conjunction with regulated transcription. Transformed lines were grown under continuous doxycycline (CI), or delayed doxycycline induction (DI) conditions. Delayed induction resulted in higher luciferase expression initially, but continued growth in the presence of doxycycline resulted in a reduction of expression to levels similar to those found in continuously induced lines. In both DI and CI treatments, the Rb7 MAR significantly reduced the percentage of silenced lines and increased transgene expression levels. These data demonstrate that active transcription increases silencing, especially in the absence of the Rb7 MAR. Importantly, the Rb7 MAR lines showed higher expression levels under both CI and DI conditions and avoided silencing that may occur in the absence of active transcription such as what would be expected as a result of condensed chromatin spreading.
转基因沉默已被证明与强启动子有关,但尚不清楚沉默倾向是由转录水平还是启动子的其他特性引起的。如果转录活性促进沉默,那么具有诱导型启动子的转基因可能较不易于沉默。为了验证这一想法,将一种强力霉素诱导型荧光素酶转基因导入一个组成型表达四环素阻遏物的NT1烟草悬浮培养细胞系。诱导型荧光素酶基因两侧是烟草Rb7基质附着区域(MAR)或间隔对照序列,以便测试MAR与调控转录共同作用的效果。转化后的细胞系在持续强力霉素(CI)或延迟强力霉素诱导(DI)条件下培养。延迟诱导最初导致荧光素酶表达较高,但在强力霉素存在下持续生长导致表达降低至与持续诱导细胞系中相似的水平。在DI和CI处理中,Rb7 MAR均显著降低了沉默细胞系的百分比并提高了转基因表达水平。这些数据表明,活跃转录会增加沉默,尤其是在没有Rb7 MAR的情况下。重要的是,Rb7 MAR细胞系在CI和DI条件下均表现出较高的表达水平,并避免了在没有活跃转录(如因浓缩染色质扩散所预期的那样)时可能发生的沉默。