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Coupling virus-induced gene silencing to exogenous green fluorescence protein expression provides a highly efficient system for functional genomics in arabidopsis and across all stages of tomato fruit development

机译:将病毒诱导的基因沉默与外源绿色荧光蛋白表达耦合,为拟南芥和番茄果实发育各个阶段的功能基因组学提供了高效系统

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Since the advent of the postgenomic era, efforts have focused on the development of rapid strategies for annotating plant genes of unknown function. Given its simplicity and rapidity, virus-induced gene silencing (VIGS) has become one of the preeminent approaches for functional analyses. However, several problems remain intrinsic to the use of such a strategy in the study of both metabolic and developmental processes. The most prominent of these is the commonly observed phenomenon of "sectoring" the tissue regions that are not effectively targeted by VIGS. To better discriminate these sectors, an effective marker system displaying minimal secondary effects is a prerequisite. Utilizing a VIGS system based on the tobacco rattle virus vector, we here studied the effect of silencing the endogenous phytoene desaturase gene (pds) and the expression and subsequent silencing of the exogenous green fluorescence protein (gfp) on the metabolism of Arabidopsis (Arabidopsis thaliana) leaves and tomato (Solanum lycopersicum) fruits. In leaves, we observed dramatic effects on primary carbon and pigment metabolism associated with the photobleached phenotype following the silencing of the endogenous pds gene. However, relatively few pleiotropic effects on carbon metabolism were observed in tomato fruits when pds expression was inhibited. VIGS coupled to gfp constitutive expression revealed no significant metabolic alterations after triggering of silencing in Arabidopsis leaves and a mild effect in mature green tomato fruits. By contrast, a wider impact on metabolism was observed in ripe fruits. Silencing experiments with an endogenous target gene of interest clearly demonstrated the feasibility of cosilencing in this system; however, carefully constructed control experiments are a prerequisite to prevent erroneous interpretation.
机译:自从后基因组时代来临以来,人们的工作重点一直放在开发快速策略以注释功能未知的植物基因上。鉴于其简单性和快速性,病毒诱导的基因沉默(VIGS)已成为功能分析的主要方法之一。然而,在代谢和发育过程的研究中,使用这种策略仍然存在一些固有的问题。其中最突出的是通常观察到的“扇形”未被VIGS有效靶向的组织区域的现象。为了更好地区分这些部门,有效的标记系统必须具有最小的次要效果。利用基于烟草拨浪鼓病毒载体的VIGS系统,我们在这里研究了沉默内源性八氢番茄红素去饱和酶基因(pds)以及外源绿色荧光蛋白(gfp)的表达和随后的沉默对拟南芥(Arabidopsis thaliana)代谢的影响。 )叶片和番茄(茄属植物)果实。在叶片中,我们观察到内源性pds基因沉默后,对与光漂白表型有关的初级碳和色素代谢的显着影响。然而,当抑制pds表达时,在番茄果实中观察到相对较少的多效性对碳代谢的影响。结合gfp组成型表达的VIGS在触发拟南芥叶片中的沉默后未显示明显的代谢变化,而在成熟的绿色番茄果实中产生了轻度影响。相比之下,成熟果实对代谢的影响更大。用感兴趣的内源靶基因进行沉默实验清楚地证明了在该系统中进行共沉默的可行性。但是,精心构建的控制实验是防止错误解释的前提。

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