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在水稻叶片中利用农杆菌介导的瞬时基因表达方法诱导基因沉默。

An in planta, Agrobacterium-mediated transient gene expression method for inducing gene silencing in rice (Oryza sativa L.) leaves.

机构信息

CIRAD, UMR AGAP, TAA108/03, Av Agropolis, F-34398 Montpellier Cedex 05, France.

出版信息

Rice (N Y). 2012 Aug 31;5(1):23. doi: 10.1186/1939-8433-5-23.

Abstract

BACKGROUND

Localized introduction and transient expression of T-DNA constructs mediated by agro-infiltration of leaf tissues has been largely used in dicot plants for analyzing the transitivity and the cell-to cell movement of the RNAi signal. In cereals, however, the morphology of the leaf and particularly the structure of the leaf epidermis, prevent infiltration of a bacterial suspension in cells by simple pressure, a method otherwise successful in dicots leaves. This study aimed at establishing a rapid method for the functional analysis of rice genes based on the triggering of RNA interference (RNAi) following Agrobacterium-mediated transient transformation of leaves.

RESULTS

Using an agro-infection protocol combining a wound treatment and a surfactant, we were able to obtain in a reliable manner transient expression of a T-DNA-borne uidA gene in leaf cells of japonica and indica rice cultivars. Using this protocol to transiently inhibit gene expression in leaf cells, we introduced hairpin RNA (hpRNA) T-DNA constructs containing gene specific tags of the phytoene desaturase (OsPDS) and of the SLENDER 1 (OsSLR1) genes previously proven to trigger RNAi of target genes in stable transformants. SiRNA accumulation was observed in the agro-infected leaf area for both constructs indicating successful triggering of the silencing signal. Accumulation of secondary siRNA was observed in both stably and transiently transformed leaf tissues expressing the HpRNA OsSLR1 construct. Gene silencing signalling was investigated in monitoring the parallel time course of OsPDS-derived mRNA and siRNA accumulation in the agro-infiltrated leaf area and adjacent systemic sectors. The sensitive RT-Q-PCR method evidenced a consistent, parallel decrease of OsPDS transcripts in both the agroinfiltred and adjacent tissues, with a time lag for the latter.

CONCLUSIONS

These results indicate that the method is efficient at inducing gene silencing in the agro-infected leaf area. The transfer of low amounts of siRNA, probably occurring passively through the symplastic pathway from the agro-infected area, seemed sufficient to trigger degradation of target transcripts in the adjacent tissues. This method is therefore well suited to study the cell-to-cell movement of the silencing signal in a monocot plant and further test the functionality of natural and artificial miRNA expression constructs.

摘要

背景

通过叶组织的农杆菌浸润介导的 T-DNA 构建的本地化引入和瞬时表达已在双子叶植物中大量用于分析 RNAi 信号的转导性和细胞间运动。然而,在谷物中,叶片的形态,特别是叶片表皮的结构,阻止了细菌悬浮液通过简单的压力渗透到细胞中,这种方法在双子叶植物叶片中是成功的。本研究旨在建立一种基于 RNA 干扰(RNAi)触发的快速分析水稻基因功能的方法,该方法基于农杆菌介导的叶片瞬时转化。

结果

使用一种结合了伤口处理和表面活性剂的农杆菌感染方案,我们能够可靠地在粳稻和籼稻品种的叶片细胞中获得 T-DNA 携带 uidA 基因的瞬时表达。使用该方案瞬时抑制叶片细胞中的基因表达,我们引入了发夹 RNA(hpRNA)T-DNA 构建体,其中包含先前被证明在稳定转化体中触发靶基因 RNAi 的类胡萝卜素脱饱和酶(OsPDS)和 SLENDER 1(OsSLR1)基因的基因特异标签。两个构建体都在 agro 感染的叶片区域观察到 siRNA 的积累,表明成功触发了沉默信号。在表达 HpRNA OsSLR1 构建体的稳定和瞬时转化的叶片组织中都观察到了二级 siRNA 的积累。在监测 agro 浸润叶片区域和相邻系统扇区中 OsPDS 衍生 mRNA 和 siRNA 积累的平行时程中,研究了基因沉默信号。敏感的 RT-Q-PCR 方法证明,在 agro 浸润和相邻组织中,OsPDS 转录物的平行减少是一致的,后者存在时间滞后。

结论

这些结果表明,该方法在诱导 agro 感染叶片区域的基因沉默方面是有效的。从 agro 感染区域通过胞质途径被动转移的少量 siRNA 似乎足以触发相邻组织中靶转录物的降解。因此,该方法非常适合于研究单子叶植物中沉默信号的细胞间运动,并进一步测试天然和人工 miRNA 表达构建体的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a88/4883685/6da79c740786/12284_2011_Article_26_Fig1_HTML.jpg

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