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首页> 外文期刊>Molecular Plant-Microbe Interactions >The Tomato Kinome and the Tomato Kinase Library ORFeome: Novel Resources for the Study of Kinases and Signal Transduction in Tomato and Solanaceae Species
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The Tomato Kinome and the Tomato Kinase Library ORFeome: Novel Resources for the Study of Kinases and Signal Transduction in Tomato and Solanaceae Species

机译:番茄动力学和番茄激酶文库ORFeome:番茄和茄科物种激酶和信号转导研究的新资源

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摘要

Protein kinase–driven phosphorylation constitutes the core of cellular signaling. Kinase components of signal transduction pathways are often targeted for inactivation by pathogens. The study of kinases and immune signal transduction in the model crop tomato (Solanum lycopersicum) would benefit from the availability of community-wide resources for large scale and systems-level experimentation. Here, we defined the tomato kinome and performed a comprehensive comparative analysis of the tomato kinome and 15 other plant species. We constructed a tomato kinase library (TOKN 1.0) of over 300 full-length open reading frames (ORF) cloned into a recombination-based vector. We developed a high-throughput pipeline to isolate and transform tomato protoplasts. A subset of the TOKN 1.0 library kinases were expressed in planta, were purified, and were used to generate a functional tomato protein microarray. All resources created were utilized to test known and novel associations between tomato kinases and Pseudomonas syringae DC3000 effectors in a large-scale format. Bsk7 was identified as a component of the plant immune response and a candidate effector target. These resources will enable comprehensive investigations of signaling pathways and host-pathogen interactions in tomato and other Solanaceae spp.
机译:蛋白激酶驱动的磷酸化构成细胞信号转导的核心。信号转导途径的激酶成分通常是病原体灭活的目标。模型农作物番茄(番茄)的激酶和免疫信号转导的研究将受益于社区范围内大规模和系统级实验资源的可用性。在这里,我们定义了番茄运动素,并对番茄运动素和其他15种植物进行了全面的比较分析。我们构建了一个超过300个全长开放阅读框(ORF)的番茄激酶文库(TOKN 1.0),克隆到了基于重组的载体中。我们开发了高通量管道来分离和转化番茄原生质体。 TOKN 1.0库激酶的子集在植物中表达,纯化并用于生成功能性番茄蛋白微阵列。创建的所有资源均用于大规模测试番茄激酶与丁香假单胞菌DC3000效应子之间的已知和新颖关联。 Bsk7被确定为植物免疫反应的组成部分和候选效应物靶标。这些资源将有助于对番茄和其他茄科植物的信号传导途径和宿主-病原体相互作用进行全面研究。

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