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Quantitative trait loci mapping and transcriptome analysis reveal candidate genes regulating the response to ozone in Arabidopsis thaliana

机译:数量性状位点作图和转录组分析揭示拟南芥中调节对臭氧响应的候选基因

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As multifaceted molecules, reactive oxygen species (ROS) are known to accumulate in response to various stresses. Ozone (O-3) is an air pollutant with detrimental effect on plants and O-3 can also be used as a tool to study the role of ROS in signalling. Genetic variation of O-3 sensitivity in different Arabidopsis accessions highlights the complex genetic architecture of plant responses to ROS. To investigate the genetic basis of O-3 sensitivity, a recombinant inbred line (RIL) population between two Arabidopsis accessions with distinct O-3 sensitivity, C24 (O-3 tolerant) and Te (O-3 sensitive) was used for quantitative trait loci (QTL) mapping. Through analysis of QTL mapping combined with transcriptome changes in response to O-3, we identified three causal QTLs and several potential candidate genes regulating the response to O-3. Based on gene expression data, water loss and stomatal conductance measurement, we found that a combination of relatively low stomatal conductance and constitutive activation of salicylic acid (SA)-mediated defence signalling were responsible for the O-3 tolerance in C24. Application of exogenous SA prior to O-3 exposure can mimic the constitutive SA signalling in C24 and could attenuate O-3-induced leaf damage in the sensitive Arabidopsis accessions Te and Cvi-0.
机译:作为多面分子,已知反应性氧(ROS)会响应各种应力而积累。臭氧(O-3)是一种对植物有害的空气污染物,O-3也可用作研究ROS在信号传导中的作用的工具。不同拟南芥种质中O-3敏感性的遗传变异突出了植物对ROS响应的复杂遗传结构。为了研究O-3敏感性的遗传基础,使用两个具有不同O-3敏感性的拟南芥种质之间的重组自交系(RIL)种群,将C24(对O-3耐受)和Te(对O-3敏感)用于定量性状。位点(QTL)映射。通过分析QTL定位结合响应O-3的转录组变化,我们确定了三个因果QTL和几个潜在的候选基因,调节了对O-3的响应。基于基因表达数据,水分损失和气孔电导率测量,我们发现相对较低的气孔电导率和水杨酸(SA)介导的防御信号的本构激活共同导致了C24的O-3耐受性。在O-3暴露之前应用外源SA可以模拟C24中的本构SA信号传导,并可以减弱敏感拟南芥种Te和Cvi-0中O-3诱导的叶片损伤。

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