De Rocher E J, Vargo-Gogola T C, Diehn S H, Green P J
Michigan State University-Department of Energy Plant Research Laboratory, East Lansing, 48824, USA.
Plant Physiol. 1998 Aug;117(4):1445-61. doi: 10.1104/pp.117.4.1445.
It is well established that the expression of Bacillus thuringiensis (B.t.) toxin genes in higher plants is severely limited at the mRNA level, but the cause remains controversial. Elucidating whether mRNA accumulation is limited transcriptionally or posttranscriptionally could contribute to effective gene design as well as provide insights about endogenous plant gene-expression mechanisms. To resolve this controversy, we compared the expression of an A/U-rich wild-type cryIA(c) gene and a G/C-rich synthetic cryIA(c) B.t.-toxin gene under the control of identical 5' and 3' flanking sequences. Transcriptional activities of the genes were equal as determined by nuclear run-on transcription assays. In contrast, mRNA half-life measurements demonstrated directly that the wild-type transcript was markedly less stable than that encoded by the synthetic gene. Sequences that limit mRNA accumulation were located at more than one site within the coding region, and some appeared to be recognized in Arabidopsis but not in tobacco (Nicotiana tabacum). These results support previous observations that some A/U-rich sequences can contribute to mRNA instability in plants. Our studies further indicate that some of these sequences may be differentially recognized in tobacco cells and Arabidopsis.
苏云金芽孢杆菌(B.t.)毒素基因在高等植物中的表达在mRNA水平上受到严重限制,这一点已得到充分证实,但其原因仍存在争议。阐明mRNA积累是在转录水平还是转录后水平受到限制,可能有助于进行有效的基因设计,并为植物内源基因表达机制提供见解。为了解决这一争议,我们比较了富含A/U的野生型cryIA(c)基因和富含G/C的合成cryIA(c) B.t.毒素基因在相同的5'和3'侧翼序列控制下的表达。通过核转录分析确定,这些基因的转录活性是相等的。相比之下,mRNA半衰期测量直接表明,野生型转录本的稳定性明显低于合成基因编码的转录本。限制mRNA积累的序列位于编码区内的多个位点,其中一些序列在拟南芥中似乎能被识别,但在烟草(Nicotiana tabacum)中则不能。这些结果支持了之前的观察结果,即一些富含A/U的序列可能导致植物中mRNA的不稳定性。我们的研究进一步表明,其中一些序列在烟草细胞和拟南芥中可能会被不同地识别。