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首页> 外文期刊>Planta: An International Journal of Plant Biology >An in vivo, luciferase-based, Agrobacterium-infiltration assay system: implications for post-transcriptional gene silencing
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An in vivo, luciferase-based, Agrobacterium-infiltration assay system: implications for post-transcriptional gene silencing

机译:一种基于荧光素酶的体内农杆菌浸润测定系统:对转录后基因沉默的影响

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An in vivo assay system for analyzing transient luciferase expression in tobacco leaves infused with Agrobacterium tumefaciens is described. The system makes use of A. tumefaciens harboring T-DNA vectors containing either an intron-containing firefly (Photinus pyralis) luciferase (EC 1.13.12.7) gene or an intron-containing sea pansy (Renilla reniformis) luciferase (EC 1.13.12.5) gene. Single or mixed Agrobacterium lines were infiltrated into leaf tissues (Nicotiana tabacum or Nicotiana benthamiana) through stomatal openings and leaf disks from infused areas floated on reaction buffers specific to each enzyme. Photons emitted were then measured to determine reporter gene activity. Parameters affecting assay reliability and sensitivity were tested, including: buffer composition; bacterial density; infusion location; reaction kinetics; and environmental factors (light and temperature). The resulting in vivo assay system generates results comparable to those obtained using a commercially available in vitro dual-luciferase(R) reporter gene assay, and reports relative expression levels, as well as induction characteristics, analogous to those obtained using leaf tissue from stably transformed plants harboring the same promoter::gene constructs. Light and temperature were observed to markedly impact transient reporter activities. Co-expression of viral suppressors of post-transcriptional gene silencing (PTGS), HcPro, p19 and AC2, confirms the occurrence of PTGS within infused zones, and provides a convenient mechanism for PTGS analysis. The in vivo transient assay was used to examine the effect on PTGS of factors such as: promoter strength; incubation temperature and double-stranded RNA production. Results from these assays provide insight into the mechanism(s) used by plants to trigger and maintain PTGS.
机译:描述了用于分析在根癌土壤杆菌中注入的烟叶中瞬时荧光素酶表达的体内测定系统。该系统利用含有含有内含子的萤火虫(Photinus pyralis)荧光素酶(EC 1.13.12.7)基因或含有内含子的海堇(Renilla reniformis)萤光素酶(EC 1.13.12.5)的根癌农杆菌携带T-DNA载体。基因。通过气孔开口和漂浮在每种酶特异反应缓冲液上的注入区的叶圆片,将单个或混合的农杆菌系渗透到叶片组织(烟草或烟草)中。然后测量发射的光子,以确定报告基因的活性。测试了影响测定可靠性和灵敏度的参数,包括:缓冲液组成;细菌密度输液位置;反应动力学和环境因素(光线和温度)。所得的体内测定系统产生的结果可与使用市售的体外双荧光素酶报告基因测定获得的结果相媲美,并报告相对表达水平以及诱导特性,类似于使用从稳定转化的叶片组织获得的结果。具有相同启动子::基因构建体的植物。观察到光和温度显着影响瞬时报告子活性。转录后基因沉默(PTGS),HcPro,p19和AC2的病毒抑制剂的共表达,证实了PTGS在注入区域内的发生,并为PTGS分析提供了方便的机制。体内瞬时测定法用于检查以下因素对PTGS的影响:启动子强度;孵育温度和双链RNA产生。这些分析的结果提供了对植物触发和维持PTGS的机制的深入了解。

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