首页> 外文期刊>The New Phytologist >Analyses of Ca2+ dynamics using a ubiquitin-10 promoter-driven Yellow Cameleon 3.6 indicator reveal reliable transgene expression and differences in cytoplasmic Ca2+ responses in Arabidopsis and rice (Oryza sativa) roots
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Analyses of Ca2+ dynamics using a ubiquitin-10 promoter-driven Yellow Cameleon 3.6 indicator reveal reliable transgene expression and differences in cytoplasmic Ca2+ responses in Arabidopsis and rice (Oryza sativa) roots

机译:使用泛素-10启动子驱动的黄色Cameleon 3.6指示剂分析CA2 +动力学揭示可靠的转基因表达和拟南芥和稻米(Oryza Sativa)根的细胞质Ca2 +反应的差异

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摘要

Ca2+ signatures are central to developmental processes and adaptive responses in plants. However, high-resolution studies of Ca2+ dynamics using genetically encoded Ca2+ indicators (GECIs) such as Yellow Cameleon (YC) proteins have so far not been conducted in important model crops such as rice (Oryza sativa). We conducted a comparative study of 35S and ubiquitin-10 (UBQ10) promoter functionality in Arabidopsis thaliana and O.sativa plants expressing the Ca2+ indicator Yellow Cameleon 3.6 (YC3.6) under control of the UBQ10 or 35S promoter. Ca2+ signatures in roots of both species were analyzed during exposure to hyperpolarization/depolarization cycles or in response to application of the amino acid glutamate. We found a superior performance of the UBQ10 promoter with regard to expression pattern, levels and expression stabilities in both species. We observed remarkable differences between the two species in the spatiotemporal parameters of the observed Ca2+ signatures. Rice appeared in general to respond with a lower maximal signal amplitude but greatly increased signal duration when compared with Arabidopsis. Our results identify important advantages to using the UBQ10 promoter in Arabidopsis and rice and in T-DNA mutant backgrounds. Moreover, the observed differences in Ca2+ signaling in the two species underscore the need for comparative studies to achieve a comprehensive understanding of Ca2+ signaling in plants.
机译:CA2 +签名是植物中发育过程和适应性反应的核心。然而,迄今为止,使用遗传编码的Ca2 +指标(GECIS)的CA2 +动力学的高分辨率研究已经在稻米(Oryza Sativa)等重要模型作物中未被进行。我们在拟南芥和O.Sativa植物中进行了35s和泛素-10(UBQ10)启动子功能的比较研究,该植物在UBQ10或35S启动子的控制下表达CA2 +指标黄Cameleon 3.6(YC3.6)。在暴露于超极化/去极化循环期间或响应于氨基酸谷氨酸的施用,分析了两种物种的根中的CA2 +签名。我们发现UBQ10启动子关于两种物种中表达模式,水平和表达稳定性的卓越性能。我们在观察到的CA2 +签名的时空参数中观察到两种物种之间的显着差异。米饭一般出现,以应对较低的最大信号幅度,但与拟南芥相比,信号持续时间大大提高。我们的结果确定了在拟南芥和水稻和T-DNA突变体背景中使用UBQ10启动子的重要优势。此外,在两个物种中观察到的CA2 +信号传导的差异强调了对比较研究的需求,以实现对植物中CA2 +信号传导的全面了解。

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