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Transcriptomics of the Rice Blast Fungus Magnaporthe oryzae in Response to the Bacterial Antagonist Lysobacter enzymogenes Reveals Candidate Fungal Defense Response Genes

机译:稻瘟病菌稻瘟病菌响应细菌拮抗溶菌酶基因的转录组学揭示了候选真菌防御反应基因。

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摘要

Plants and animals have evolved a first line of defense response to pathogens called innate or basal immunity. While basal defenses in these organisms are well studied, there is almost a complete lack of understanding of such systems in fungal species, and more specifically, how they are able to detect and mount a defense response upon pathogen attack. Hence, the goal of the present study was to understand how fungi respond to biotic stress by assessing the transcriptional profile of the rice blast pathogen, Magnaporthe oryzae, when challenged with the bacterial antagonist Lysobacter enzymogenes. Based on microscopic observations of interactions between M. oryzae and wild-type L. enzymogenes strain C3, we selected early and intermediate stages represented by time-points of 3 and 9 hours post-inoculation, respectively, to evaluate the fungal transcriptome using RNA-seq. For comparative purposes, we also challenged the fungus with L. enzymogenes mutant strain DCA, previously demonstrated to be devoid of antifungal activity. A comparison of transcriptional data from fungal interactions with the wild-type bacterial strain C3 and the mutant strain DCA revealed 463 fungal genes that were down-regulated during attack by C3; of these genes, 100 were also found to be up-regulated during the interaction with DCA. Functional categorization of genes in this suite included those with roles in carbohydrate metabolism, cellular transport and stress response. One gene in this suite belongs to the CFEM-domain class of fungal proteins. Another CFEM class protein called PTH11 has been previously characterized, and we found that a deletion in this gene caused advanced lesion development by C3 compared to its growth on the wild-type fungus. We discuss the characterization of this suite of 100 genes with respect to their role in the fungal defense response.
机译:植物和动物已经进化出了对天然病原体或基础免疫的病原体的第一道防御反应。尽管对这些生物的基本防御机制进行了充分的研究,但几乎完全缺乏对真菌物种中此类系统的了解,更具体地说,它们如何在病原体侵袭时能够检测并发出防御反应。因此,本研究的目的是通过评估稻瘟病病原体稻瘟病菌(Magnaporthe oryzae)在受到细菌拮抗剂溶菌酶基因攻击后的转录特征,从而了解真菌如何应对生物胁迫。基于米曲霉与野生型产酶酶基因菌株C3之间相互作用的微观观察,我们选择了接种后3和9小时的时间点代表的早期和中期,以使用RNA-酶来评估真菌转录组。 seq。为了进行比较,我们还用以前证明没有抗真菌活性的L.酶基因突变菌株DCA攻击了真菌。比较来自与野生型细菌菌株C3和突变菌株DCA的真菌相互作用的转录数据,发现463个真菌基因在C3攻击过程中被下调。在这些基因中,有100个在与DCA的相互作用中也被上调。该套件中基因的功能分类包括那些在碳水化合物代谢,细胞转运和应激反应中起作用的基因。该套件中的一个基因属于真菌蛋白质的CFEM域类。先前已对另一种称为PTH11的CFEM类蛋白进行了表征,我们发现,与在野生型真菌上生长相比,该基因的缺失导致C3导致病变的发展。我们讨论了这100个基因在真菌防御反应中的作用。

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