Mette M F, van der Winden J, Matzke M A, Matzke A J
Institute of Molecular Biology, Austrian Academy of Sciences, Billrothstrasse 11, A-5020 Salzburg, Austria.
EMBO J. 1999 Jan 4;18(1):241-8. doi: 10.1093/emboj/18.1.241.
Previous work has suggested that de novo methylation of plant nuclear genes can be triggered by an RNA-DNA interaction. To test whether transcription of a promoter would induce de novo methylation and silencing of unlinked genes driven by the same promoter, a chimeric 'gene' consisting of a nopaline synthase promoter (NOSpro) positioned downstream of the cauliflower mosaic virus 35S promoter (35Spro) and flanked at the 3' end by a NOS terminator (NOSter) was constructed and introduced into the genome of a plant that normally expresses an unmethylated NOSpro-neomycinphosphotransferase (nptII) gene. Transformants were tested for kanamycin resistance and NOSpro RNA synthesis. Most produced a full-length polyadenylated NOSpro RNA, which did not induce silencing or methylation at the NOSpro-nptII target gene. One, however, contained truncated non-polyadenylated NOSpro RNA; in this plant, the NOSpro-nptII gene became silenced and methylated in the NOSpro region. Molecular analysis of the NOSpro silencing locus revealed two incomplete copies of the 35Spro-NOSpro gene arranged as an inverted repeat with NOSpro sequences at the center. Reducing NOSpro transcription by crossing a 35Spro-silencing locus partially reactivated nptII gene expression and decreased NOSpro methylation at the target locus, thus implicating aberrant NOSpro RNA in this trans-silencing phenomenon.
先前的研究表明,植物核基因的从头甲基化可由RNA-DNA相互作用引发。为了测试启动子的转录是否会诱导由同一启动子驱动的非连锁基因的从头甲基化和沉默,构建了一个嵌合“基因”,该基因由位于花椰菜花叶病毒35S启动子(35Spro)下游的胭脂碱合酶启动子(NOSpro)组成,并在3'端侧翼有一个NOS终止子(NOSter),然后将其导入正常表达未甲基化的NOSpro-新霉素磷酸转移酶(nptII)基因的植物基因组中。对转化体进行卡那霉素抗性和NOSpro RNA合成测试。大多数转化体产生全长多聚腺苷酸化的NOSpro RNA,其在NOSpro-nptII靶基因处未诱导沉默或甲基化。然而,有一个转化体含有截短的非多聚腺苷酸化的NOSpro RNA;在这种植物中,NOSpro-nptII基因在NOSpro区域发生沉默和甲基化。对NOSpro沉默位点的分子分析显示,35Spro-NOSpro基因有两个不完整的拷贝,排列成反向重复,中心为NOSpro序列。通过与35Spro沉默位点杂交来降低NOSpro转录,可部分重新激活nptII基因表达,并减少靶位点处的NOSpro甲基化,因此表明异常的NOSpro RNA参与了这种反式沉默现象。