首页> 外文期刊>Annals of Botany >Highly efficient virus-induced gene silencing (VIGS) in california poppy (Eschscholzia californica): An evaluation of VIGS as a strategy to obtain functional data from non-model plants
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Highly efficient virus-induced gene silencing (VIGS) in california poppy (Eschscholzia californica): An evaluation of VIGS as a strategy to obtain functional data from non-model plants

机译:加利福尼亚罂粟(Eschscholzia californica)中的高效病毒诱导基因沉默(VIGS):对VIGS的评估,作为从非模型植物中获取功能数据的策略

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Background and Aims Eschscholzia californica (California poppy) is an emerging model plant for 'evo-devo' studies from the basal eudicot clade of Papaveraceae. California poppy has a relatively small genome, a short life cycle and, most importantly, it is amenable for transformation. However, since this transformation protocol is time consuming, virus-induced gene silencing (VIGS) was evaluated as a fast method to obtain functional data for California poppy genes. Methods Commercially available California poppy plants were infiltrated with Agrobacterium tumefaciens carrying the tobacco rattle virus plasmids pTRV1 and pTRV2. pTRV2 contained part of the eschscholzia Phytoene Desaturase (EcPDS) gene whose loss of function results in photobleaching of the green parts of the plant and in a lack of floral coloration. The degree and duration of these symptoms was evaluated for vegetative rosettes and plants in flower. Key Results It is shown that VIGS is able to effectively down-regulate the EcPDS gene in eschscholzia. Various degrees of silencing were observed starting < 2 weeks after infiltration with Agrobacterium tumefaciens in 92 % of the plants. Tissue with silencing symptoms also showed complete or strong reduction of EcPDS transcripts. Strong silencing resulted in almost completely white petals, fruits, shoots and leaves. Plants with a strong degree of silencing will eventually die off; however, others are able to produce EcPDS gene product even after a strong initial silencing and will recover. Silencing was found to be not always systemic, but was often restricted to certain organs or parts of organs. Conclusions VIGS is an effective, fast and transient method to down-regulate gene expression in eschscholzia. It serves well to detect prominent phenotypes which may become obvious even if some target gene transcript remains in the plant tissue. However, subtle phenotypes will be more difficult to detect, as extremely strong silencing effects occur in < 10 % of all flowers from infected plants.
机译:背景和目的加州罂粟(Eschscholzia californica)是一种新兴的模式植物,用于从罂粟科的基础真双子叶进化枝进行“ evo-devo”研究。加州罂粟的基因组相对较小,生命周期短,最重要的是,它易于转化。但是,由于此转化协议非常耗时,因此将病毒诱导的基因沉默(VIGS)作为获得加州罂粟基因功能数据的快速方法进行了评估。方法用携带烟草摇铃病毒质粒pTRV1和pTRV2的根癌农杆菌浸润可商购的加利福尼亚罂粟植物。 pTRV2包含了埃希氏菌属植物去饱和酶(EcPDS)基因的一部分,其功能丧失导致植物绿色部分的光漂白,并且缺乏花色。对花中的营养莲座丛和植物评估了这些症状的程度和持续时间。关键结果表明,VIGS能够有效下调精神分裂症患者的EcPDS基因。在92%的植物中,农杆菌浸润后不到2周开始观察到各种程度的沉默。具有沉默症状的组织还显示EcPDS转录物完全或强烈减少。强烈的沉默导致几乎完全白色的花瓣,果实,嫩芽和叶子。高度沉默的植物最终将死亡。但是,其他人即使在强烈的初始沉默后仍能够产生EcPDS基因产物,并且将恢复。人们发现沉默并不总是系统性的,而是常常局限于某些器官或器官的某些部位。结论VIGS是一种有效,快速且短暂的方法,可以下调大肠杆菌中的基因表达。它可以很好地检测出突出的表型,即使某些目标基因转录本保留在植物组织中,这些表型也可能变得很明显。但是,细微的表型将更难检测,因为在受感染植物的所有花朵中,只有不到10%的花朵会产生极强的沉默效果。

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