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Overview of the functional virulent genome of the coffee leaf rust pathogen Hemileia vastatrix with an emphasis on early stages of infection

机译:咖啡叶锈病病原体Hemileia greatatrix的功能性强毒基因组概述重点是感染的早期阶段

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摘要

Hemileia vastatrix is the causal agent of coffee leaf rust, the most important disease of coffee Arabica. In this work, a 454-pyrosequencing transcriptome analysis of H. vastatrix germinating urediniospores (gU) and appressoria (Ap) was performed and compared to previously published in planta haustoria-rich (H) data. A total of 9234 transcripts were identified and annotated. Ca. 50% of these transcripts showed no significant homology to international databases. Only 784 sequences were shared by the three conditions, and 75% were exclusive of either gU (2146), Ap (1479) or H (3270). Relative transcript abundance and RT-qPCR analyses for a selection of genes indicated a particularly active metabolism, translational activity and production of new structures in the appressoria and intense signaling, transport, secretory activity and cellular multiplication in the germinating urediniospores, suggesting the onset of a plant-fungus dialogue as early as at the germ tube stage. Gene expression related to the production of carbohydrate-active enzymes and accumulation of glycerol in germinating urediniospores and appressoria suggests that combined lytic and physical mechanisms are involved in appressoria-mediated penetration. Besides contributing to the characterization of molecular processes leading to appressoria-mediated infection by rust fungi, these results point toward the identification of new H. vastatrix candidate virulence factors, with 516 genes predicted to encode secreted proteins.
机译:Hemileia greatatrix是咖啡叶锈病(咖啡阿拉比卡咖啡最重要的疾病)的病因。在这项工作中,对巨大的发芽的链状梭菌(gU)和美ress(Ap)进行了454焦磷酸测序转录组分析,并将其与以前在丰富的植物丰富(H)数据中发表的进行了比较。总共鉴定和注释了9234个笔录。钙这些成绩单中有50%与国际数据库没有明显同源性。这三个条件仅共享784个序列,而gU(2146),Ap(1479)或H(3270)除外75%。相对转录物丰度和RT-qPCR分析的基因选择表明,在食欲动物中特别活跃的代谢,翻译活性和新结构的产生以及发芽的复孢子虫孢子中强烈的信号传导,转运,分泌活性和细胞增殖,提示甲状旁腺的发病植物-真菌对话最早在生殖管阶段。与碳水化合物活性酶的产生和甘油在萌发的梭子孢子和食欲中的积累相关的基因表达表明,溶食和物理机制相结合参与了食欲介导的渗透。这些结果除了有助于表征导致锈病真菌引起的食欲介导的感染的分子过程外,还指向鉴定新的巨大嗜血杆菌候选毒力因子,其中516个基因预计编码分泌蛋白。

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