首页> 外文会议>Genomic Signal Processing and Statistics, 2009. GENSIPS 2009 >Arabidopsis defense response against Pseudomonas syringae - Effects of major regulatory genes and the impact of coronatine
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Arabidopsis defense response against Pseudomonas syringae - Effects of major regulatory genes and the impact of coronatine

机译:拟南芥对丁香假单胞菌的防御反应-主要调控基因的作用和冠冕素的影响

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Arabidopsis defense response against the bacterial pathogen, Pseudomonas syringae, is a complex and highly regulated process. Previous studies have identified many critical genes encoding regulators that govern innate immunity, but comprehensive transcriptome analysis of corresponding mutants is lacking. Using a custom microarray, we profiled the transcriptome of many mutants with mutations in critical regulatory genes affecting Arabidopsis disease resistance. We show that previously identified mutants affecting the salicylic acid (SA) sector of the defense network have similar transcriptional profiles. Surprisingly, jin1, jar1 and dde2 that are involved in jasmonates (JA) sector did not show major transcriptome changes, while coi1 did. Further analysis revealed that the phytotoxin, coronatine, secreted by P. syringae, is responsible for nearly all COI1-mediated responses.
机译:拟南芥对细菌病原体

假单胞菌 <丁香>丁香科的防御反应是一个复杂且受高度调控的过程。先前的研究已经确定了许多编码控制先天免疫的调节剂的关键基因,但是缺乏对相应突变体的全面转录组分析。使用定制的微阵列,我们分析了许多突变体的转录组,这些突变体的关键调控基因中有影响拟南芥抗病性的突变。我们显示,先前确定的影响防御网络的水杨酸(SA)部门的突变体具有相似的转录谱。令人惊讶的是,与茉莉(JA)部门有关的 jin1 jar1 dde2 没有显示主要的转录组变化,而 coi1 < / i>做到了。进一步的分析表明, P。 丁香科分泌的植物毒素冠冕碱几乎负责所有COI1介导的反应。

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