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GFP 分割转基因烟草细胞自主样沉默。

Cell-autonomous-like silencing of GFP-partitioned transgenic Nicotiana benthamiana.

机构信息

National Academy of Agricultural Science (NAAS), Rural Development Administration (RDA), Suwon 441-707, Korea

College of Natural Resources, University of California, Berkeley CA94720, USA.

出版信息

J Exp Bot. 2014 Aug;65(15):4271-83. doi: 10.1093/jxb/eru200. Epub 2014 May 27.

Abstract

We previously reported the novel partitioning of regional GFP-silencing on leaves of 35S-GFP transgenic plants, coining the term "partitioned silencing". We set out to delineate the mechanism of partitioned silencing. Here, we report that the partitioned plants were hemizygous for the transgene, possessing two direct-repeat copies of 35S-GFP. The detection of both siRNA expression (21 and 24 nt) and DNA methylation enrichment specifically at silenced regions indicated that both post-transcriptional gene silencing (PTGS) and transcriptional gene silencing (TGS) were involved in the silencing mechanism. Using in vivo agroinfiltration of 35S-GFP/GUS and inoculation of TMV-GFP RNA, we demonstrate that PTGS, not TGS, plays a dominant role in the partitioned silencing, concluding that the underlying mechanism of partitioned silencing is analogous to RNA-directed DNA methylation (RdDM). The initial pattern of partitioned silencing was tightly maintained in a cell-autonomous manner, although partitioned-silenced regions possess a potential for systemic spread. Surprisingly, transcriptome profiling through next-generation sequencing demonstrated that expression levels of most genes involved in the silencing pathway were similar in both GFP-expressing and silenced regions although a diverse set of region-specific transcripts were detected.This suggests that partitioned silencing can be triggered and regulated by genes other than the genes involved in the silencing pathway.

摘要

我们之前报道了 35S-GFP 转基因植物叶片上 GFP 沉默的新型分区,创造了“分区沉默”一词。我们着手描绘分区沉默的机制。在这里,我们报告说,分区植物是转基因的半合子,具有 35S-GFP 的两个直接重复拷贝。siRNA 表达(21 和 24 nt)和 DNA 甲基化富集的检测特异性地在沉默区域表明,转录后基因沉默(PTGS)和转录基因沉默(TGS)都参与了沉默机制。通过体内农杆菌浸润 35S-GFP/GUS 和接种 TMV-GFP RNA,我们证明 PTGS 而不是 TGS 在分区沉默中起主导作用,得出结论,分区沉默的潜在机制类似于 RNA 指导的 DNA 甲基化(RdDM)。尽管分区沉默区域具有系统传播的潜力,但分区沉默的初始模式以细胞自主的方式严格维持。令人惊讶的是,通过下一代测序进行的转录组分析表明,参与沉默途径的大多数基因的表达水平在 GFP 表达和沉默区域中相似,尽管检测到了一组多样化的区域特异性转录物。这表明分区沉默可以由参与沉默途径的基因以外的基因触发和调节。

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