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首页> 外文期刊>Physiological and Molecular Plant Pathology >Methylation-sensitive amplified polymorphism analysis of resistant and susceptible interactions of cucumber with Podosphaera xanthii
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Methylation-sensitive amplified polymorphism analysis of resistant and susceptible interactions of cucumber with Podosphaera xanthii

机译:黄黄瓜XANTHII致敏感敏感的扩增多态性分析耐黄瓜抗性和易感相互作用

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摘要

Cytosine methylation alterations play key roles in gene regulation in plants interacting with biotrophic pathogens. For resistant and susceptible interactions of cucumber with the powdery mildew pathogen, Podosphaera xanthii, methylation of DNA cytosines were monitored by methylation-sensitive amplified polymorphism (MSAP) analysis from immediately prior to 96 h post inoculation (hpi). In both resistant and susceptible interactions, methylation levels significantly changed over time, but a significant association was observed for decreasing number of loci with demethylated CCGG motif in the susceptible cultivar compared to increasing numbers in the resistant cultivar. Sequencing of six demethylated MSAP fragments from the resistant cultivar and one from susceptible cultivar showed that all contained promoter and cis-acting regulatory elements (CAREs). For the resistant cultivar, three of these were in possible regulatory regions located within or near tRNA coding genes, and those three plus two others contained CAREs associated with response to biotic stress and defense hormones SA, MeJA, ABA and ET. One possible reason for demethylation in the resistant genomic tRNA genes may be that demethylation can de-suppress gene expression resulting in increasing the availability of certain amino acids for defense proteins.
机译:胞嘧啶甲基化改变在与生物营养病原体相互作用的植物中的基因调节中起关键作用。对于黄瓜与粉末状霉菌病原体,Podosphaera xanthii的抗性和敏感相互作用,通过在接种后96小时之前立即通过甲基化敏感的扩增多态性(MSAP)分析来监测DNA细胞瘤的甲基化。在抗性和易感相互作用中,随着时间的推移,甲基化水平显着变化,但与抗性品种中的数量增加,在易感品种中,在易感品种中,观察到在易感品种中与去甲基化CCGG基序的数量减少的显着关联。从抗性品种和来自易感品种中的六个去甲基化MSAP片段的测序表明,所有含有的启动子和顺式作用调节元素(关心)。对于耐药品种,其中三个是在TRNA编码基因内或附近的可能调节区域,以及其中三个另外的其他与对生物应激和防御激素SA,MEJA,ABA和ET相关的关怀相关。抗性基因组TRNA基因中去甲基化的一种可能原因可以是去抑制基因表达,导致对防御蛋白质的某些氨基酸的可用性增加。

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