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Differential Regulation of Defense-Related Gene Expression in Response to Red Rot Pathogen Colletotrichum falcatum Infection in Sugarcane

机译:防御相关基因表达对甘蔗红色腐烂病原菌炭疽菌感染的差异调节

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摘要

Red rot is a serious disease of sugarcane caused by the fungus Colletotrichum falcatum imposing a considerable economic loss annually in all sugarcane-producing countries. In this study, we analyzed the early resistance response of sugarcane to red rot fungus by comparing the differences between control and inoculated stalk tissues. Differential display reverse transcription polymerase chain reaction (DD-RT-PCR) was employed to identify altered expression of genes in disease-resistant cv Co 93009, in response to pathogen infection. DD-RT-PCR identified 300 differentially expressed transcripts of which 112 were selected for further analysis. Cloning and sequence analysis of the isolated cDNA fragments resulted in functional categorization of these clones into five categories, of which the defense/stress/signaling group was the largest, with clones homologous to genes known to be actively involved in various pathogenesis-related functions in plant species. This group showed overexpression of several transcripts related to ethylene-mediated and jasmonic acid pathway of plant defense mechanisms. Of the 112 expressed sequence tags, validation of expression was carried out for five important genes whose role in plant defense mechanisms is well established. This is the first report of Colletotrichum-mediated gene regulation in sugarcane which has provided a set of candidate genes for detailed molecular dissection of signaling and defense responses in tropical sugarcane during the onset of red rot resistance.
机译:红腐病是由真菌Colletotrichum falcatum引起的一种严重的甘蔗病,每年在所有甘蔗生产国造成相当大的经济损失。在这项研究中,我们通过比较对照和接种的茎组织之间的差异,分析了甘蔗对红腐真菌的早期抗性反应。差异显示逆转录聚合酶链反应(DD-RT-PCR)用于鉴定抗病性cv Co 93009中响应病原体感染的基因表达变化。 DD-RT-PCR鉴定了300个差异表达的转录本,从中选择了112个进行进一步分析。克隆cDNA片段的克隆和序列分析将这些克隆的功能分为五类,其中防御/应激/信号传递组最大,与已知与多种发病机制相关功能活跃的基因同源的克隆。植物品种。该小组显示了与乙烯介导的茉莉酸途径和植物防御机制有关的几种转录物的过表达。在112个表达的序列标签中,对五个重要基因的表达进行了验证,这些基因在植物防御机制中的作用已得到充分确立。这是炭疽菌介导的基因调控中甘蔗的第一个报道,该报道提供了一组候选基因,用于在红腐病抗性发作期间对热带甘蔗中的信号传导和防御反应进行详细的分子解剖。

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