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一套新的β-雌二醇诱导载体系统,便于构建和高效表达转基因,揭示 CBL3 依赖的 CIPK5 从细胞质到液泡膜的易位。

A new β-estradiol-inducible vector set that facilitates easy construction and efficient expression of transgenes reveals CBL3-dependent cytoplasm to tonoplast translocation of CIPK5.

机构信息

Institut für Biologie und Biotechnologie der Pflanzen, Universität Münster, Schlossplatz 4, 48149 Münster, Germany.

出版信息

Mol Plant. 2013 Nov;6(6):1814-29. doi: 10.1093/mp/sst065. Epub 2013 May 27.

Abstract

Transient and stable expression of transgenes is central to many investigations in plant biology research. Chemical regulation of expression can circumvent problems of plant lethality caused by constitutive overexpression or allow inducible knock (out/down) approaches. Several chemically inducible or repressible systems have been described and successfully applied. However, cloning and application-specific modification of most available inducible expression systems have been limited and remained complicated due to restricted cloning options. Here we describe a new set of 57 vectors that enable transgene expression in transiently or stably transformed cells. All vectors harbor a synthetically optimized XVE expression cassette, allowing β-estradiol mediated protein expression. Plasmids are equipped with the reporter genes GUS, GFP, mCherry, or with HA and StrepII epitope tags and harbor an optimized multiple cloning site for flexible and simple cloning strategies. Moreover, the vector design allows simple substitution of the driving promoter to achieve tissue-specificity or to modulate expression ranges of inducible transgene expression. We report details of the kinetics and dose-dependence of expression induction in Arabidopsis leaf mesophyll protoplasts, transiently transformed Nicotiana benthamiana leaves, and stably transformed Arabidopsis plants. Using these vectors, we investigated the influence of CBL (Calcineurin B-like) protein expression on the subcellular localization of CIPKs (Calcineurin B-like interacting protein kinases). These analyses uncovered that induced co-expression of CBL3 is fully sufficient for dynamic translocation of CIPK5 from the cytoplasm to the tonoplast. Thus, the vector system presented here facilitates a broad range of research applications.

摘要

转基因的瞬时和稳定表达是植物生物学研究中的许多研究的核心。化学表达调控可以避免由于组成型过表达引起的植物致死问题,或者允许诱导敲除(out/down)方法。已经描述并成功应用了几种化学诱导或可诱导的系统。然而,由于克隆选择有限,大多数可用的诱导表达系统的克隆和应用特异性修饰仍然很复杂。在这里,我们描述了一组新的 57 个载体,这些载体能够在瞬时或稳定转化的细胞中转基因表达。所有载体都带有合成优化的 XVE 表达盒,允许β-雌二醇介导的蛋白质表达。质粒配备了报告基因 GUS、GFP、mCherry 或 HA 和 StrepII 表位标签,并带有优化的多克隆位点,可用于灵活和简单的克隆策略。此外,载体设计允许简单替换驱动启动子,以实现组织特异性或调节诱导转基因表达的表达范围。我们报告了在拟南芥叶肉原生质体、瞬时转化的烟草原生质体和稳定转化的拟南芥植物中转基因表达诱导的动力学和剂量依赖性的详细信息。使用这些载体,我们研究了 CBL(钙调神经磷酸酶 B 样)蛋白表达对 CIPKs(钙调神经磷酸酶 B 样相互作用蛋白激酶)亚细胞定位的影响。这些分析表明,CBL3 的诱导共表达足以使 CIPK5 从细胞质动态易位到液泡膜。因此,这里提出的载体系统为广泛的研究应用提供了便利。

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