{{'Search' | translate}}
 

PCR tubes

Company: Thermo Fisher Scientific
Catalog#: AB0266
Bio-protocol()
Company-protocol()
Other protocol()

TetR Regulated in vivo Repression Technology to Identify Conditional Gene Silencing in Genetically Engineerable Bacteria Using Vibrio cholerae Murine Infections as Model System
Author:
Date:
2020-10-05
[Abstract]  Investigation of bacterial gene regulation upon environmental changes is still a challenging task. For example, Vibrio cholerae, a pathogen of the human gastrointestinal tract, faces diverse transient conditions in different compartments upon oral ingestion. Genetic reporter systems have been demonstrated to be extremely powerful tools to unravel gene regulation events in complex conditions, but so far focused mainly on gene induction. Herein, we describe the TetR-controlled recombination-based in vivo expression technology TRIVET, which allows detection of gene silencing events. TRIVET resembles a modified variant of the in vivo expression technology (IVET) as well as recombination-based in vivo expression technology (RIVET), which were used to ... [摘要]  [摘要]研究细菌基因对环境变化的调控仍然是一项艰巨的任务。例如,人胃肠道的病原体霍乱弧菌在口服后会在不同的隔室中遇到各种短暂的状况。事实证明,遗传报告系统是揭示复杂条件下基因调控事件的极有力工具,但到目前为止,它主要集中在基因诱导上。在本文中,我们描述了基于TetR控制的重组的体内表达技术TRIVET,该技术可检测基因沉默事件。TRIVET类似于体内表达技术(IVET)以及基于重组的体内变异体 表达技术(RIVET),用于鉴定宿主定殖过程中几种细菌的条件基因诱导。像它的前辈一样,TRIVET是一个基于单细胞的报告系统,可以通过耐药谱的表型变化以时空方式分析细菌基因的阻遏。简而言之,无启动子的tetR (编码转录阻遏物TetR)可通过转座子诱变随机地整合到细菌基因组中,或通过同源重组在目标启动子的下游特异性整合到细菌基因组中。的TetR导致的去阻遏的转录表达的减少的TetR控制解离TNPR,这反过来又导致切除ö F A Ñ抗生素抗性盒(也称为RES-盒)和改变的电阻曲线可观察到的通过划线上氨苄青霉素和卡那霉素板。然后可以将这种改变量化为抗性和非抗性分离株之间的比例。此外,新引入的第二报道基因,promot erless ...

Rolling Circle Amplification to Screen Yam Germplasm for Badnavirus Infections and to Amplify and Characterise Novel Badnavirus Genomes
Author:
Date:
2018-01-05
[Abstract]  Since the first discovery of badnaviruses (family Caulimoviridae, genus Badnavirus) in yam (Dioscorea spp.) germplasm in the 1970s (Harrison and Roberts, 1973), several hundred partial badnavirus reverse transcriptase (RT)-ribonuclease H (RNaseH) sequences have been characterised (Kenyon et al., 2008; Bousalem et al., 2009), but only a few complete Dioscorea bacilliform virus (DBV) genome sequences have been reported (Phillips et al., 1999; Seal and Muller, 2007; Bömer et al., 2016 and 2017; Sukal et al., 2017; Umber et al., 2017). We have optimised a workflow involving total nucleic acid extractions and rolling circle amplification (RCA) combined with restriction enzyme analysis for the detection ... [摘要]  自二十世纪七十年代山药(Dioscorea spp。)种质中首次发现坏病毒属(家庭花椰菜科,属于病毒属)之后(Harrison和Roberts, 1973),已经表征了数百个部分坏死病毒逆转录酶(RT) - 核糖核酸酶H(RNaseH)序列(Kenyon等人,2008; Bousalem等人,2009年),但仅有少数几种完整的Dioscorea杆状病毒(DBV)基因组序列已被报道(Phillips等,1999; Seal和Muller,2007;Bömer等, 2016和2017; Sukal等人,2017; Umber等人,2017)。我们优化了总核酸提取和滚环扩增(RCA)结合限制性酶分析的工作流程,以检测和扩增山药种质中存在的DBV。我们已经使用这种方法成功地揭示了三种新型附加体阴性坏死病毒(Bömer等人,2016年)。我们提出这是变性梯度凝胶电泳的补充方法,其能够快速指示坏死病毒多样性以及在宿主基因组中鉴定潜在整合的坏死病毒序列(Turaki等人,2017年) )。在这里,我们描述了一步一步的方案来筛选山药种质的坏死病毒感染使用RCA作为一个有效的研究工具,在扩增和表征的新型坏死病毒基因组。

【背景】RCA是经常用于扩增环状DNA病毒基因组的序列无关的策略(Rector等人,2004)。 Phi29聚合酶介导的RCA技术用于(i)检测新型病毒; ...

Comments