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首页> 外文期刊>Plant Biotechnology Journal >Virus-induced gene silencing for Asteraceae-a reverse genetics approach for functional genomics in Gerbera hybrida
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Virus-induced gene silencing for Asteraceae-a reverse genetics approach for functional genomics in Gerbera hybrida

机译:用于植物植物的病毒诱导的基因沉默 - 非洲菊杂交菌中功能基因组学的反向遗传方法

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Virus-induced gene silencing (VIGS) is a natural defence mechanism in plants which leads to sequence-specific degradation of viral RNA. For identifying gene functions, Tobacco rattle virus (TRV)-based VIGS has been applied for silencing of endogenous genes in many plant species. Gerbera hybrida (Asteraceae) has emerged as a novel model for studies in flower development and secondary metabolism. For this highly heterozygous species, functional studies have been conducted through reverse genetic methods by producing stable transgenic lines, which, however, is labour-intensive and time-consuming. For the development of TRV-based VIGS system for gerbera, and for the first time for an Asteraceaeous species, we screened several gerbera cultivars and optimized the agroinfiltration methods for efficient silencing. Gene fragments for gerbera phytoene desaturase (GPDS) and Mg-chelatase subunits (GChl-H and GChl-I), expressed from a TRV vector, induced silencing phenotypes in leaves, scapes, and involucral bracts indicating their feasibility as markers for green tissues. In addition, robust silencing symptoms were achieved in gerbera floral tissues by silencing the anthocyanin pathway gene for chalcone synthase (GCHS1) and a gerbera B-type MADS-box gene globosa (GGLO1), confirming the phenotypes previously observed in stable transgenic lines. Unexpectedly, photobleaching induced by GPDS and GChl-H or GChl-I silencing, or by the herbicide norflurazon, resulted in silencing of the polyketide synthase gene G2PS1, which has no apparent connections to carotenoid or chlorophyll biosynthesis. We have shown feasibility of VIGS for functional studies in gerbera, but our results also show that selection of the marker gene for silencing must be critically evaluated.
机译:病毒诱导的基因沉默(Vigs)是植物中的天然防御机制,导致病毒RNA的序列性劣化。为了鉴定基因功能,基本的烟雾慢速病毒(TRV)已经应用于许多植物物种中的内源基因沉默。 Gerbera Hybrida(Asteraceae)已成为花卉发育和次生新陈代谢研究的新型模型。对于这种高度杂合种物种,通过产生稳定的转基因系,通过逆向遗传方法进行功能研究,然而,劳动密集型和耗时的耗时。为了开发Gerbera的基于TRV的Vigs系统,并且首次进行挖掘物种,我们筛选了几种非洲菊品种,并优化了用于高效沉默的农药滤波方法。从TRV载体表达的非洲菊植物去饱和酶(GCHL-H和GCHL-I)的基因片段,从TRV载体表达,诱导叶片,切片和受理苞片中的沉默表型表明它们作为绿色组织的标志物的可行性。此外,通过沉默脱霉素合酶(GCHS1)和Gerbera B型Mad-Box基因Globosa(Gglo1)的花青素途径基因在Gerbera花组织中实现了鲁棒的沉默症状,证实了以稳定的转基因素观察到的表型。意外地,由GPDS和GCH1-H或GCH1-I沉默或由除草剂Norflurazon诱导的光噬引起,导致聚酮合成酶基因G2PS1沉默,其与类胡萝卜素或叶绿素生物合成无明显的连接。我们表明了Verbera在功能性研究中的可行性,但我们的结果还表明,必须严重评估用于沉默的标记基因的选择。

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