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烟草中顺次导入相同转基因序列导致的转基因诱导的转录后基因沉默丧失感。

Loss of sense transgene-induced post-transcriptional gene silencing by sequential introduction of the same transgene sequences in tobacco.

机构信息

Graduate School of Horticulture, Chiba University, Japan.

出版信息

FEBS J. 2010 Apr;277(7):1695-703. doi: 10.1111/j.1742-4658.2010.07591.x. Epub 2010 Feb 17.

Abstract

RNA silencing is an epigenetic inhibition of gene expression and is guided by small interfering RNAs. Sense transgene-induced post-transcriptional gene silencing (S-PTGS) occurs in a portion of a transgenic plant population. When a sense transgene encoding a tobacco endoplasmic reticulum omega-3 fatty acid desaturase (NtFAD3) was introduced into tobacco plants, an S-PTGS line, S44, was obtained. Introduction of another copy of the NtFAD3 transgene into S44 plants caused a phenotypic change from S-PTGS to overexpression. Because this change was associated with the methylation of the promoter sequences of the transgene, reduced transcriptional activity may abolish S-PTGS and residual transcription of the sense transgene may account for the overexpression. To clarify whether RNA-directed DNA methylation (RdDM) can repress the transcriptional activity of the S44 transgene locus, we introduced several RdDM constructs targeting the transgene promoter. An RdDM construct harboring a 200-bp-long fragment of promoter sequences efficiently abrogated the generation of NtFAD3 small interfering RNAs in S44 plants. Transcription of the transgene was partially repressed, but the resulting NtFAD3 mRNAs successfully accumulated and an overexpressed phenotype was established. Our results indicate an example in which overexpression of the transgene is established by complex epigenetic interactions among the transgenic loci.

摘要

RNA 沉默是一种基因表达的表观遗传抑制,由小干扰 RNA 指导。反义转基因诱导的转录后基因沉默 (S-PTGS) 发生在一部分转基因植物群体中。当一个编码烟草内质网 ω-3 脂肪酸去饱和酶 (NtFAD3) 的反义转基因被引入烟草植物中时,获得了一个 S-PTGS 系,S44。将另一个 NtFAD3 转基因拷贝引入 S44 植物中,导致表型从 S-PTGS 转变为过表达。由于这种变化与转基因启动子序列的甲基化有关,转录活性的降低可能会废除 S-PTGS,而反义转基因的残留转录可能解释了过表达。为了澄清 RNA 指导的 DNA 甲基化 (RdDM) 是否可以抑制 S44 转基因座的转录活性,我们引入了几个针对转基因启动子的 RdDM 构建体。一个携带 200 个碱基对长的启动子序列的 RdDM 构建体有效地消除了 S44 植物中 NtFAD3 小干扰 RNA 的产生。转基因的转录被部分抑制,但产生的 NtFAD3 mRNA 成功积累,并建立了过表达表型。我们的结果表明,在转基因座之间复杂的表观遗传相互作用下,建立了转基因的过表达。

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