共查询到20条相似文献,搜索用时 15 毫秒
1.
RNA干扰的研究进展 总被引:8,自引:0,他引:8
RNA干扰是指外源双链RNA进入细胞后引起与其同源的mRNA特异性降解的现象,它是真核生物在长期进化中形成的一种保守的防御机制,对真核生物有着重要的意义,它参与真核生物抵御病毒侵染、阻断转座子的异常活动,调控基因表达。RNA干扰已成为一种进行基因功能分析的强有力的工具,并有望成为最有潜力的基因干预治疗方法。 相似文献
2.
昆虫RNA干扰主要指外源双链RNA诱发的,通过阻碍特定基因的翻译或转录,引起内源目标信使RNA沉默的机制。由于RNA干扰的特异性,RNA干扰技术主要应用于昆虫功能基因组和害虫防治的研究。本综述主要对双链RNA引起昆虫体内RNA干扰研究中双链RNA转运的3种方法(显微注射法、喂食法及浸泡与转染法)进行介绍和讨论。这3种方法中,显微注射法能将精确数量的双链RNA迅速转运到目标组织,更适合实验室基因功能的研究;喂食法操作简单快速,适合高通量的基因筛选;浸泡与转染法也适合大规模的基因筛选,但更常见于细胞研究中。 相似文献
3.
4.
RNAi技术在昆虫功能基因研究中的应用进展 总被引:4,自引:1,他引:4
RNA干扰(RNA interference,RNAi)是指外源或内源的双链RNA(dsRNA)特异性地引起基因表达沉默的现象,它作为一种有效的工具用来产生转录后沉默,从而抑制特定基因的表达,成为基因功能研究的一种新方法,除了在模式昆虫如果蝇Drosophila中广泛应用之外,也在非模式昆虫中得到成功应用。近年来,RNAi技术在导入方法和基因功能分析方面都取得了飞速发展,且与转基因技术相结合成功应用于害虫防治领域。本文综述了RNAi技术在导入方法、昆虫功能基因组功能分析及害虫防治等领域新近的研究成果,并展望了该技术的应用前景。 相似文献
5.
6.
RNA干涉与功能基因组 总被引:2,自引:0,他引:2
RNA干涉是通过双链RNA的介导特异性抑制具有相应序列的基因表达的转录后水平基因沉默机制,它为反向遗传方法研究基因功能开辟了一条新路。本综述了RNA干涉的机制以及它在功能基因组研究方面的最新进展。 相似文献
7.
8.
Application of RNA interference (RNAi) for insect pest management is limited by variable efficiency of RNAi in different insect species. In Locusta migratoria, RNAi is highly efficient through injection of dsRNA, but oral delivery of dsRNA is much less effective. Efforts to understand this phenomenon have shown that dsRNA is more rapidly degraded in midgut fluid than in hemolymph due to nuclease enzyme activity. In the present study, we identified and characterized two full-length cDNAs of double-stranded RNA degrading enzymes (dsRNase) from midgut of L. migratoria, which were named LmdsRNase2 and LmdsRNase3. Gene expression analysis revealed that LmdsRNase2 and LmdsRNase3 were predominantly expressed in the midgut, relatively lower expression in gastric caeca, and trace expression in other tested tissues. Incubation of dsRNA in midgut fluid from LmdsRNase3-suppressed larvae or control larvae injected with dsGFP resulted in high levels of degradation; however, dsRNA incubated in midgut fluid from LmdsRNase2-suppressed larvae was more stable, indicating LmdsRNase2 is responsible for dsRNA degradation in the midgut. To verify the biological function of LmdsRNase2 in vivo, nymphs were injected with dsGFP, dsLmdsRNase2 or dsLmdsRNase3 and chitinase 10 (LmCht10) or chitin synthase 1 (LmCHS1) dsRNA were orally delivered. Mortality associated with reporter gene knockdown was observed only in locusts injected with dsLmdsRNase2 (48% and 22%, for dsLmCht10 and dsLmCHS1, respectively), implicating LmdsRNase2 in reducing RNAi efficiency. Furthermore, recombinantly expressed LmdsRNase2 fusion proteins degraded dsRNA rapidly, whereas LmdsRNase3 did not. These results suggest that rapid degradation of dsRNA by dsRNase2 in the midgut is an important factor causing low RNAi efficiency when dsRNA is orally delivered in the locust. 相似文献
9.
RNA干涉的研究进展 总被引:34,自引:0,他引:34
生物体内导入双链RNA后会引起体内同源基因特异性的沉默,这种现象称为RNA干涉,本主要介绍RNA干涉的研究历史,作用机制和应用等方面的情况。 相似文献
10.
RNA干涉的最新研究进展 总被引:20,自引:2,他引:20
RNA干涉 (RNAi)是将双链RNA(dsRNA)导入细胞引起特异基因mRNA降解的一种细胞反应过程 .它是转录后基因沉默 (PTGS)的一种 .RNAi在生物界中广泛存在 .RNAi发生过程主要分为 3个阶段 :起始阶段 ,扩增阶段 ,效应阶段 .RNAi在维持基因组稳定、保护基因组免受外源核酸侵入、基因表达调控等方面发挥重要生物学作用 .RNAi作为基因沉默的一个工具 ,已被广泛用于基因功能研究、基因治疗和新药研究与开发等方面 . 相似文献
11.
RNA干扰在疾病治疗方面的应用研究 总被引:1,自引:0,他引:1
RNA干扰是由双链RNA引起的序列特异的基因沉默现象。由于RNA干扰能在细胞组织及动物模型中沉默疾病相关基因,因此,RNA干扰也是各种疾病治疗的有效手段。在哺乳动物细胞内诱导RNA干扰可以通过导入小干扰RNA(siRNA),或是以质粒、病毒为载体表达短的发夹RNA(shRNA)而实现。本文介绍了RNA干扰在疾病治疗方面的应用,并就其面临的挑战进行讨论。 相似文献
12.
病虫害严重威胁着作物安全生产。近年来,在RNA干扰(RNA interference,RNAi)基础上开发病虫害防控策略的研究得到越来越多的关注。RNAi是真核生物体内的一种基因调控过程,如何将外源RNA有效地递送到靶标生物体内,是病虫害RNAi技术能否成功的关键之一。国内外学者进行了大量研究和实践,探究影响病虫害吸收和传递外源双链RNA(double-stranded RNA,dsRNA)的因素,探索提高dsRNA递送效率的方法,取得了重要的进展。本文对相关研究进行了梳理,简述了影响病虫害对dsRNA吸收和递送的因素,对外源RNA的递送策略进行了综述,讨论了纳米颗粒复合物在dsRNA递送中的应用前景,以期为相关研究提供参考。 相似文献
13.
14.
昆虫的RNA干扰 总被引:2,自引:0,他引:2
RNA干扰(RNAi)是一种强有力的分子生物学技术, 在昆虫研究中得到了较多的应用。目前, RNAi技术主要应用于昆虫功能基因和功能基因组研究, 已在多个目的19种昆虫上实现了RNAi。在昆虫上实现RNAi的方法主要有注射、浸泡、喂食、转基因和病毒介导等方法, 这些方法各有特点, 其中喂食法因其简单而最有应用前景。昆虫RNAi的系统性较为复杂, 只有部分昆虫具有RNAi的系统性。昆虫中RNAi信号传导的基因可能是sid-1, 但昆虫RNAi的系统性机理还不是很清楚。转基因植物产生的dsRNA实现了对作物的保护, 证实了RNAi技术可用于害虫控制, 为害虫控制开辟了新领域。昆虫的RNAi研究处在起步阶段, 研究昆虫RNAi的机理, 特别是RNAi在昆虫体内的系统性扩散机理, 改进实现RNAi的方法, 提高RNAi技术在昆虫研究中的应用, 有利于昆虫基因功能鉴定和害虫控制, 促进昆虫学科的发展。 相似文献
15.
16.
《Journal of Asia》2020,23(4):1160-1164
Despite extensive research during the past decade elucidating the mechanism of RNA interference (RNAi) in insects, it is not clear how ingested or injected double-stranded RNA (dsRNA) triggers RNAi response in the whole body or even its progeny, which is referred to as systemic RNAi. In the present study, we aim to understand how the dsRNA delivered into cells causes systemic RNAi using Colorado potato beetle cells (Lepd-SL1). We first tested if dsRNA treatment induces systemic RNAi in Lepd-SL1 cells. Exposure of a new batch of Lepd-SL1 cells to the conditioned medium where Lepd-SL1 cells treated with dsRNA targeting inhibitor of apoptosis were grown for 6 h induced apoptosis in these new batch of cells. We hypothesized the exosomes in the conditioned medium are responsible for RNAi-inducing effect. To test this hypothesis, we isolated exosomes from the conditioned medium from Lepd-SL1 cells that had been treated with dsGFP (dsRNA targeting gene coding for green fluorescent protein) or dsLuc (dsRNA targeting gene coding for the luciferase) were grown. RNA present in the purified exosomes was analyzed to check if long dsRNA or siRNA is accumulated in them. The results from the electrophoretic mobility shift assay clearly showed that the long dsRNAs are present in the exosomes. By knockdown of candidate genes involved in endosome recycling and generation pathways, we found that Rab4 and Rab35 are involved in exosome production and transport. 相似文献
17.
18.
19.
RNAi已经成为揭示基因功能的一个常用的有力工具。在昆虫RNAi技术体系中,通过显微注射方法向昆虫体内注入dsRNA,实现系统性干扰,是最为广泛采用的方法。但对于体型较小的昆虫,注射法操作存在较大的难度,特别是非常微小的昆虫烟粉虱Bemisia tabaci。为了进行烟粉虱大规模基因功能验证,需要开发一套成熟的RNAi技术体系。本研究以烟粉虱的CYP6CM1基因为目标基因,通过显微注射法注射不同浓度的dsRNA到烟粉虱4龄若虫,荧光定量PCR检测其沉默效果。结果表明:在对单头烟粉虱注射50 n L时,注射不同浓度的dsRNA,对CYP6CM1基因的沉默效果不同,最大沉默效率可达到80%以上。因此,本实验成功构建了烟粉虱的RNAi技术体系,也可用于其它粉虱类害虫的RNAi技术。 相似文献
20.
RNA interference in Lepidoptera: an overview of successful and unsuccessful studies and implications for experimental design 总被引:5,自引:0,他引:5
Terenius O Papanicolaou A Garbutt JS Eleftherianos I Huvenne H Kanginakudru S Albrechtsen M An C Aymeric JL Barthel A Bebas P Bitra K Bravo A Chevalier F Collinge DP Crava CM de Maagd RA Duvic B Erlandson M Faye I Felföldi G Fujiwara H Futahashi R Gandhe AS Gatehouse HS Gatehouse LN Giebultowicz JM Gómez I Grimmelikhuijzen CJ Groot AT Hauser F Heckel DG Hegedus DD Hrycaj S Huang L Hull JJ Iatrou K Iga M Kanost MR Kotwica J Li C Li J Liu J Lundmark M Matsumoto S Meyering-Vos M Millichap PJ 《Journal of insect physiology》2011,57(2):231-245
Gene silencing through RNA interference (RNAi) has revolutionized the study of gene function, particularly in non-model insects. However, in Lepidoptera (moths and butterflies) RNAi has many times proven to be difficult to achieve. Most of the negative results have been anecdotal and the positive experiments have not been collected in such a way that they are possible to analyze. In this review, we have collected detailed data from more than 150 experiments including all to date published and many unpublished experiments. Despite a large variation in the data, trends that are found are that RNAi is particularly successful in the family Saturniidae and in genes involved in immunity. On the contrary, gene expression in epidermal tissues seems to be most difficult to silence. In addition, gene silencing by feeding dsRNA requires high concentrations for success. Possible causes for the variability of success in RNAi experiments in Lepidoptera are discussed. The review also points to a need to further investigate the mechanism of RNAi in lepidopteran insects and its possible connection to the innate immune response. Our general understanding of RNAi in Lepidoptera will be further aided in the future as our public database at http://insectacentral.org/RNAi will continue to gather information on RNAi experiments. 相似文献