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An improved method for rapid analysis of promoters using modified sonication-assisted transient assay

机译:使用改进的超声辅助瞬时分析法快速分析启动子的改进方法

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摘要

We present here a modified, sonication-assisted transient transformation assay for rapid analysis of cis-regulatory elements. We tested promoter elements from MIR159B locus of Brassica juncea by generating stable transgenic lines and compared the transcriptional activity of GUS reporter with that of the transient assay method. To obtain reliable and repeatable results, and to omit false-positive data, we optimized several parameters including sonication duration and cycle and concentration of Agrobacterium tumefaciens measured as optical density (O.D.) at 600 nm. To the best of our knowledge, this is the first report of promoter characterization of MIR159B from Brassica juncea, and comparative analysis of stable and transient lines. Our analysis shows that the protocol described herein allows understanding promoter activity/transcriptional control in tissues other than leaf or protoplast which have remained the mainstay for transient analysis thus far. We tested reporter gene GUS under the control of constitutive promoter, CaMV 35S, and MIR159b from Brassica juncea. We optimized the duration of sonication (5-, 10- and 15-min cycle), bacterial density (measured as O.D at 600 nm = 0.6/0.8/1.0) and Agro-infection time (5, 10, 15 min), and co-cultivation (12-, and 24-h). Sonication cycle of 10-min, followed by Agro-infection and co-cultivation with Agrobacterium tumefaciens with O.D. 600 nm = 0.8 and for 12 h was found to be optimum. We could successfully express reporter genes in deep-seated tissues such as floral organs and pollen grains where it was previously not possible to perform transient assay. Constitutive GUS activity was observed when reporter was placed under control of the constitutive promoter of CaMV 35S. Reporter GUS when placed under transcriptional control of MIR159b promoter from Brassica juncea showed reporter activity in floral tissues, in mature pollen grains. Comparative analysis of reporter activity from stable transgenic lines at T2 generation with that of transient assay system reveals identical to near-identical reporter activity. Transient assay could be successfully performed in tissues collected not only from Arabidopsis thaliana, but also from Brassica juncea and Brassica nigra to demonstrate its wide applicability. Our modified method thus has the potential of quick and rapid analysis of promoter activity and allows us to record the developmental dynamics and spatio-temporal expression pattern driven by specific promoters. Suitable modification and controls should also allow analysis of hormonal regulation and identification of trans-factors via DNA–protein interactions. Furthermore, this method can also be extended to study promoters under various environmental conditions that otherwise do not allow growth and complete life cycle of healthy plants and can be modified to test reporter activity in other non-model plants or plants with long life cycle.Electronic supplementary materialThe online version of this article (10.1007/s13205-018-1219-x) contains supplementary material, which is available to authorized users.
机译:我们在这里提出一种改进的,超声辅助的瞬时转化测定法,用于快速分析顺式调节元件。我们通过产生稳定的转基因品系测试了芥菜的MIR159B基因座的启动子元件,并将GUS报告基因的转录活性与瞬时分析方法进行了比较。为了获得可靠和可重复的结果,并省略假阳性数据,我们优化了多个参数,包括超声持续时间,根癌农杆菌的周期和浓度,以600 nm的光密度(O.D.)进行测量。据我们所知,这是来自芥菜的MIR159B启动子表征的首次报道,以及稳定和瞬时株系的比较分析。我们的分析表明,本文所述的方案可帮助了解除叶或原生质体以外的组织中的启动子活性/转录控制,这些组织至今仍是瞬态分析的主体。我们在组成启动子CaMV 35S和来自芥菜的MIR159b的控制下测试了报告基因GUS。我们优化了超声处理的持续时间(5分钟,10分钟和15分钟的周期),细菌密度(在600 nm = 0.6 / 0.8 / 1.0时测得的OD)和农杆菌感染时间(5、10、15分钟),以及共培养(12小时和24小时)。超声处理10分钟,然后进行农杆菌感染并与根癌农杆菌和O.D.共培养。 600 nm = 0.8并持续12 h被发现是最佳的。我们可以在以前无法进行瞬时分析的深层组织(例如花器官和花粉粒)中成功表达报告基因。当将报道分子置于CaMV 35S的组成型启动子的控制下时,观察到组成型GUS活性。当记者GUS受到芥菜的MIR159b启动子的转录控制时,它在成熟花粉粒的花组织中表现出记者活性。比较稳定的转基因品系在T2代中的报道基因活性与瞬时分析系统的报道活性,发现与几乎相同的报道分子活性相同。不仅可以从拟南芥,芸苔芥和黑芥中收集的组织中成功进行瞬时分析,证明了其广泛的适用性。因此,我们改良的方法具有快速分析启动子活性的潜力,并允许我们记录由特定启动子驱动的发育动力学和时空表达模式。适当的修饰和控制也应允许荷尔蒙调节的分析和通过DNA-蛋白质相互作用鉴定反式因子。此外,该方法还可以扩展到研究在各种环境条件下的启动子,否则这些条件将不允许健康植物的生长和完整的生命周期,并且可以进行修改以测试其他非模型植物或寿命长的植物中的报告子活性。补充材料本文的在线版本(10.1007 / s13205-018-1219-x)包含补充材料,授权用户可以使用。

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