Kuang Hanhui, Padmanabhan Chellappan, Li Feng, Kamei Ayako, Bhaskar Pudota B, Ouyang Shu, Jiang Jiming, Buell C Robin, Baker Barbara
Plant Gene Expression Center, Department of Plant and Microbial Biology, University of California, Berkeley, Berkeley, California 94720, USA.
Genome Res. 2009 Jan;19(1):42-56. doi: 10.1101/gr.078196.108. Epub 2008 Nov 26.
Small RNAs regulate the genome by guiding transcriptional and post-transcriptional silencing machinery to specific target sequences, including genes and transposable elements (TEs). Although miniature inverted-repeat transposable elements (MITEs) are closely associated with euchromatic genes, the broader functional impact of these short TE insertions in genes is largely unknown. We identified 22 families of MITEs in the Solanaceae (MiS1-MiS22) and found abundant MiS insertions in Solanaceae genomic DNA and expressed sequence tags (EST). Several Solanaceae MITEs generate genome changes that potentially affect gene function and regulation, most notably, a MiS insertion that provides a functionally indispensable alternative exon in the tobacco mosaic virus N resistance gene. We show that MITEs generate small RNAs that are primarily 24 nt in length, as detected by Northern blot hybridization and by sequencing small RNAs of Solanum demissum, Nicotiana glutinosa, and Nicotiana benthamiana. Additionally, we show that stable RNAi lines silencing DICER-LIKE3 (DCL3) in tobacco and RNA-dependent RNA polymerase 2 (RDR2) in potato cause a reduction in 24-nt MITE siRNAs, suggesting that, as in Arabidopsis, TE-derived siRNA biogenesis is DCL3 and RDR2 dependent. We provide evidence that DICER-LIKE4 (DCL4) may also play a role in MITE siRNA generation in the Solanaceae.
小RNA通过引导转录和转录后沉默机制作用于特定靶序列(包括基因和转座元件)来调控基因组。尽管微型反向重复转座元件(MITE)与常染色质基因密切相关,但这些短的转座元件插入基因中更广泛的功能影响在很大程度上尚不清楚。我们在茄科植物中鉴定出22个MITE家族(MiS1-MiS22),并在茄科基因组DNA和表达序列标签(EST)中发现了大量MiS插入。一些茄科MITE会导致基因组变化,可能影响基因功能和调控,最显著的是一个MiS插入为烟草花叶病毒N抗性基因提供了一个功能上不可或缺的可变外显子。我们发现,通过Northern杂交以及对野生马铃薯、黏毛烟草和本氏烟草的小RNA进行测序检测到,MITE产生的小RNA主要长度为24 nt。此外,我们还发现,在烟草中使DICER-LIKE3(DCL3)沉默以及在马铃薯中使RNA依赖的RNA聚合酶2(RDR2)沉默的稳定RNA干扰株系会导致24 nt MITE来源的小干扰RNA减少,这表明,与拟南芥一样,转座元件来源的小干扰RNA的生物合成依赖于DCL3和RDR2。我们提供的证据表明,DICER-LIKE4(DCL4)在茄科植物MITE小干扰RNA的产生中可能也发挥作用。