首页> 美国卫生研究院文献>Plant Physiology >Loss-of-Function Mutations in Chitin Responsive Genes Show Increased Susceptibility to the Powdery Mildew Pathogen Erysiphe cichoracearum
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Loss-of-Function Mutations in Chitin Responsive Genes Show Increased Susceptibility to the Powdery Mildew Pathogen Erysiphe cichoracearum

机译:几丁质反应基因中的功能丧失突变显示增加了对白粉病病原体Erysiphe cichoracearum的易感性

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摘要

Chitin is a major component of fungal walls and insect exoskeletons. Plants produce chitinases upon pathogen attack and chito-oligomers induce defense responses in plants, though the exact mechanism behind this response is unknown. Using the ATH1 Affymetrix microarrays consisting of about 23,000 genes, we examined the response of Arabidopsis (Arabidopsis thaliana) seedlings to chito-octamers and hydrolyzed chitin after 30 min of treatment. The expression patterns elicited by the chito-octamer and hydrolyzed chitin were similar. Microarray expression profiles for several genes were verified via northern analysis or quantitative reverse transcription-PCR. We characterized T-DNA insertion mutants for nine chito-oligomer responsive genes. Three of the mutants were more susceptible to the fungal pathogen, powdery mildew, than wild type as measured by conidiophore production. These three mutants included mutants of genes for two disease resistance-like proteins and a putative E3 ligase. The isolation of loss-of-function mutants with enhanced disease susceptibility provides direct evidence that the chito-octamer is an important oligosaccharide elicitor of plant defenses. Also, this study demonstrates the value of microarray data for identifying new components of uncharacterized signaling pathways.
机译:几丁质是真菌壁和昆虫骨骼的主要成分。植物在病原体侵袭时会产生几丁质酶,而壳寡聚物诱导植物的防御反应,尽管该反应背后的确切机制尚不清楚。使用由大约23,000个基因组成的ATH1 Affymetrix微阵列,我们检查了处理30分钟后拟南芥(Arabidopsis thaliana)幼苗对壳聚糖八聚体和水解甲壳质的反应。壳聚糖-八聚体和水解甲壳素引起的表达模式相似。通过northern分析或定量逆转录PCR验证了几个基因的微阵列表达谱。我们表征了9个壳寡聚物响应基因的T-DNA插入突变体。如通过分生孢子产生所测量的,三个突变体比野生型对真菌病原体白粉病更敏感。这三个突变体包括两个抗病样蛋白和一个推定的E3连接酶的基因突变体。具有疾病易感性增强的功能丧失型突变体的分离提供了直接证据,表明壳八聚体是植物防御的重要寡糖引发剂。同样,这项研究证明了微阵列数据对于鉴定未表征的信号通路的新成分的价值。

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