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1.
植物病毒载体的研究进展及其应用   总被引:1,自引:0,他引:1  
曹雪松  李毅 《植物学报》2004,21(6):719-723
综述了利用植物病毒载体过量表达或抑制基因表达方面的研究进展。这些技术的发展为工业制药和功能基因组学的研究提供了有力的研究工具。对病毒载体在应用中的局限性及其前景进行了分析。  相似文献   

2.
RNA沉默与植物病毒   总被引:11,自引:0,他引:11  
植物中RNA沉默(RNAsilencing)亦称为转录后基因沉默(PTGS)或共抑制,是植物抵抗外来核酸(转座子、转基因或病毒)入侵,并保护自身基因组完整性的一种防御机制。RNA沉默是近十年来发现的植物界中普遍存在的现象,已成为植物分子生物学领域的一个新的研究方向。对RNA沉默特点和机制的研究表明,植物病毒与(转基因)植物内发生的RNA沉默有着密切的联系,作者从病毒对RNA沉默的诱导、抑制、防御等方面,简述了RNA沉默与病毒的关系。并对病毒载体所诱导的RNA沉默在植物发育和基因组功能分析等方面的应用价值进行了讨论。  相似文献   

3.
病毒诱导的基因沉默及其在植物基因功能研究中的应用   总被引:9,自引:0,他引:9  
RNA介导的基因沉默是近年来在生物体中发现的一种基于核酸水平高度保守的特异性降解机制.病毒诱导的基因沉默(virus induced gene silencing, VIGS)是指携带植物功能基因cDNA的病毒在侵染植物体后,可诱导植物发生基因沉默而出现表型突变,进而可以研究该目的基因功能.至今,已经建立了以RNA病毒、DNA病毒、卫星病毒和DNA卫星分子为载体的VIGS体系,这些病毒载体能在多种寄主植物(包括拟南芥、番茄和大麦)上有效抑制功能基因的表达.VIGS已开始应用于N基因和Pto基因介导的抗性信号途径中关键基因的功能研究、抗病毒相关的寄主因子研究以及植物代谢和发育调控研究.在当前植物基因组或EST序列大量测定的情况下,VIGS为植物基因功能鉴定提供了有效的技术平台.  相似文献   

4.
主要从病毒诱导的基因沉默体系中植物与病毒的相互作用、VIGS涉及的信号分子和移动方式以及靶基因的沉默和病毒载体的复制关系介绍和分析植物病毒诱导的基因沉默效应的分子机制,并进一步分析此种体系在植物基因功能研究中应用的研究进展。  相似文献   

5.
植物病毒诱导的基因沉默效应的分子机制   总被引:1,自引:0,他引:1  
主要从病毒诱导的基因沉默体系中植物与病毒的相互作用、VIGS涉及的信号分子和移动方式以及靶基因的沉默和病毒载体的复制关系介绍和分析植物病毒诱导的基因沉默效应的分子机制,并进一步分析此种体系在植物基因功能研究中应用的研究进展。  相似文献   

6.
病毒诱导的基因沉默已成为研究植物功能基因组的重要工具. VIGS 体系因其方法简便、周期性短以及避免植物转化等诸多优点, 已在利用正向遗传学和反向遗传学寻找和鉴定基因功能方面发挥了日益重要的作用. 越来越多的植物病毒被改造成为VIGS 载体, 并已在植物发育、生物逆境、非生物逆境、细胞代谢、信号传导等基因功能研究方面得到了应用. 本文围绕VIGS的发展以及在植物功能基因鉴定中的应用及前景提出了展望.  相似文献   

7.
病毒诱导烟草的基因沉默   总被引:2,自引:1,他引:1  
病毒诱导基因沉默是利用RNA介导病毒防卫机制的一项技术。构建含有目的基因片段的人工改造病毒载体,通过农杆菌侵染导致植物内源目的基因沉默。为建立病毒诱导基因沉默体系,选用烟草脆裂病毒(TRV)和烟草为实验材料。构建了八氢番茄红素去饱和酶基因(PDS)的基因沉默病毒载体,病毒载体侵染结果显示目的基因PDS沉默导致烟草幼苗出现光漂白现象。采用RT-PCR的方法检测目的基因PDS的沉默效果,结果显示PDS基因mRNA被显著降解。该体系的建市有利于将来对植物基因进行高通量功能分析。  相似文献   

8.
烟草脆裂病毒(tobaccorattlevirus,TRV)是一类应用比较广泛而且效率和持久性较好的病毒载体,能够介导基因沉默同时不会带来病毒诱导的症状。改造后的病毒能够促进非病毒序列的插入以及对植物的后续感染,也可以鉴定宿主植物生长点的基因,因此TRV在植物基因功能鉴定中具有广泛的应用。该文介绍TRV沉默载体的构建、诱导基因沉默原理、在植物基因功能研究中的应用以及优缺点。  相似文献   

9.
研究表明TGS往往与目的基因启动子的甲基化密切相关,RNA沉默则由目的基因的mRNA特异,挫降解引起。植物体中诱导RNA沉默的外部因素有转基因和病毒。与传统的转基因技术相比,病毒诱导的基因沉默(Virus-induced gene silencing VIGS)是一种瞬时表达体系,能在较短的时间里取得良好的效果,目前被广泛地用来研究植物基因的功能。就VIGS的研究进展做一个比较全面的综述。阐述了DNA和RNA病毒诱导植物基因沉默的机理,同时讨论了利用病毒诱导的基因沉默(VIGS)鉴定植物基因功能的优缺点和将来的发展趋势。  相似文献   

10.
病毒诱导的基因沉默(VIGS)是近年来发展的一种研究植物基因功能的新技术.至今尚不明确这种新技术是否能够有效地沉默植物根系中与矿质营养相关的基因.本研究中,以根系高铁还原酶基因FR01为例,探讨了一种改进的卫星DNA沉默载体(DNAmβ)在研究与根系矿质营养相关的基因功能中的适用性.将番茄的铁还原酶基因FRO1的cDNA片段插入到DNAmβ载体中,构建了FRO1基因的沉默载体,并利用农杆菌介导法和辅助病毒中国番茄黄化曲叶病毒一起接种番茄.结果表明,缺铁番茄根系的FROImRNA水平显著降低,同时,铁还原酶活性也明显降低,上述结果证明了VIGS技术可以用来研究植物根系中与矿质营养相关的基因功能。  相似文献   

11.
12.
传统的植物遗传转化方法周期长、工作量大、过程繁琐,不利于基因功能的快速高通量鉴定.近年来随着基因沉默机制研究的深入和不断发展,利用病毒诱导的基因沉默(Virus induced gene silencing,VIGS)进行植物功能基因组研究作为一种快速、高通量的反向遗传学工具已被广泛应用在烟草、马铃薯、番茄等植物中, 在大规模的植物基因组功能鉴定中展示了广阔的应用前景.综述了 VIGS 的作用机制、植物病毒栽体、转化方法以及在植物基因功能研究等方面的应用及前景.  相似文献   

13.
14.
Geminivirus-based vectors for gene silencing in Arabidopsis   总被引:13,自引:0,他引:13  
Gene silencing, or RNA interference, is a powerful tool for elucidating gene function in Caenorhabditis elegans and Drosophila melanogaster. The vast genetic, developmental and sequence information available for Arabidopsis thaliana makes this an attractive organism in which to develop reliable gene-silencing tools for the plant world. We have developed a system based on the bipartite geminivirus cabbage leaf curl virus (CbLCV) that allows silencing of endogenous genes singly or in combinations in Arabidopsis. Two vectors were tested: a gene-replacement vector derived from the A component; and an insertion vector derived from the B component. Extensive silencing was produced in new growth from the A component vectors, while only minimal silencing and symptoms were seen in the B component vector. Two endogenous genes were silenced simultaneously from the A component vector and silencing of the genes was maintained throughout new growth. Because the CbLCV vectors are DNA vectors they can be inoculated directly from plasmid DNA. Introduction of these vectors into intact plants bypasses transformation and extends the kinds of silencing studies that can be carried out in Arabidopsis.  相似文献   

15.
RNA沉默在分析植物基因功能方面的研究   总被引:1,自引:0,他引:1  
RNA沉默是真核生物的一种高度保守的和序列特异的RNA降解系统,它不但是基础生物学领域的研究热点,同时在调节基因表达或研究基因功能方面也是非常有前景的。植物中的转录后基因沉默(PTGS)是RNA沉默的一种形式,通过PTGS能对目标RNA进行特异性降解。对双链RNA(dsRNA)在RNA沉默启动中所起中心作用的认知,形成了几种RNA沉默载体的构建方法,这些方法与基因组资源相结合,通过转基因或非转基因的方法能够快速和高效研究植物的基因功能。  相似文献   

16.
In plants, particular micro‐RNAs (miRNAs) induce the production of a class of small interfering RNAs (siRNA) called trans‐acting siRNA (ta‐siRNA) that lead to gene silencing. A single miRNA target is sufficient for the production of ta‐siRNAs, which target can be incorporated into a vector to induce the production of siRNAs, and ultimately gene silencing. The term miRNA‐induced gene silencing (MIGS) has been used to describe such vector systems in Arabidopsis. Several ta‐siRNA loci have been identified in soybean, but, prior to this work, few of the inducing miRNAs have been experimentally validated, much less used to silence genes. Nine ta‐siRNA loci and their respective miRNA targets were identified, and the abundance of the inducing miRNAs varies dramatically in different tissues. The miRNA targets were experimentally verified by silencing a transgenic GFP gene and two endogenous genes in hairy roots and transgenic plants. Small RNAs were produced in patterns consistent with the utilization of the ta‐siRNA pathway. A side‐by‐side experiment demonstrated that MIGS is as effective at inducing gene silencing as traditional hairpin vectors in soybean hairy roots. Soybean plants transformed with MIGS vectors produced siRNAs and silencing was observed in the T1 generation. These results complement previous reports in Arabidopsis by demonstrating that MIGS is an efficient way to produce siRNAs and induce gene silencing in other species, as shown with soybean. The miRNA targets identified here are simple to incorporate into silencing vectors and offer an effective and efficient alternative to other gene silencing strategies.  相似文献   

17.
18.
Virus-induced gene silencing in plants   总被引:18,自引:0,他引:18  
Virus-induced gene silencing (VIGS) is a technology that exploits an RNA-mediated antiviral defense mechanism. In plants infected with unmodified viruses the mechanism is specifically targeted against the viral genome. However, with virus vectors carrying inserts derived from host genes the process can be additionally targeted against the corresponding mRNAs. VIGS has been used widely in plants for analysis of gene function and has been adapted for high-throughput functional genomics. Until now most applications of VIGS have been in Nicotiana benthamiana. However, new vector systems and methods are being developed that could be used in other plants, including Arabidopsis. Here we discuss practical and theoretical issues that are specific to VIGS rather than other gene "knock down" or "knockout" approaches to gene function. We also describe currently used protocols that have allowed us to apply VIGS to the identification of genes required for disease resistance in plants. These methods and the underlying general principles also apply when VIGS is used in the analysis of other aspects of plant biology.  相似文献   

19.
Summary Virus-induced gene silencing (VIGS) is an extremely powerful tool for plant functional genomics. We used Tobacco rattle virus (TRV)-derived VIGS vectors expressed from binary vectors within Agrobacterium to induce RNA silencing in plants. Leaf infiltration is the most common method of agroinoculation used for VIGS but this method has limitations as it is laborious for large-scale screening and some plants are difficult to infiltrate. Here we have developed a novel and simple method of agroinoculation, called 'agrodrench', where soil adjacent to the plant root is drenched with an Agrobacterium suspension carrying the TRV-derived VIGS vectors. By agrodrench we successfully silenced the expression of phytoene desaturase (PDS), a 20S proteasome subunit (PB7) or Mg-protoporphyrin chelatase (Chl H) encoding genes in Nicotiana benthamiana and in economically important crops such as tomato, pepper, tobacco, potato, and Petunia, all belonging to the Solanaceae family. An important aspect of agrodrench is that it can be used for VIGS in very young seedlings, something not possible by the leaf infiltration method, which usually requires multiple fully expanded leaves for infiltration. We also demonstrated that VIGS functioned to silence target genes in plant roots. The agrodrench method of agroinoculation was more efficient than the leaf infiltration method for VIGS in roots. Agrodrench will facilitate rapid large-scale functional analysis of cDNA libraries and can also be applied to plants that are not currently amenable to VIGS technology by conventional inoculation methods.  相似文献   

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