Reininger Vanessa, Schlegel Markus
ETH Zurich, Institute of Integrative Biology, Universitätstrasse 16, 8092, Zurich.
PLoS One. 2016 Mar 8;11(3):e0150591. doi: 10.1371/journal.pone.0150591. eCollection 2016.
Phialocephala subalpina belongs to the Phialocephala fortinii s.l.-Acepphala applanata species complex (PAC) forming one of the major groups belonging to the dark septate endophytes (DSE). Depending on the strain, PAC was shown to form neutral to pathogenic associations with its host plant Picea abies. To understand PACs lifestyle we investigated the effect of presence/absence of Picea abies on the transcriptome of strain 6_70_1.
PAC strain 6_70_1 was grown in liquid Pachlewski media either induced by its host plant Picea abies or without host plant as a control. Mycelia were harvested in a time course (1, 2, 3, 4, 7, 11, 18 days) with and without induction by the host plant and the fungal transcriptome revealed by Illumina sequencing. Differential gene expression analysis over the time course comparing control and treatment at each time point using the 'edgeR glm approach' and a gene enrichment analysis using GO categories were performed.
The three main functional groups within differentially expressed genes were 'metabolism', 'transport' and 'cell rescue, defense and virulence'. Additionally, genes especially involved in iron metabolism could be detected by gene set enrichment analysis.
In conclusion, we found PAC strain 6_70_1 to be metabolically very active during colonization of its host plant Picea abies. A major shift in functional groups over the time course of this experiment could not be observed but GO categories which were found to be enriched showed different emphasis depending in the day post induction.
亚高山瓶霉属于福尔蒂尼瓶霉复合种-扁平无顶霉物种复合体(PAC),是深色有隔内生真菌(DSE)的主要类群之一。根据菌株不同,PAC与寄主植物欧洲云杉形成从中性到致病性的多种关联。为了解PAC的生活方式,我们研究了有无欧洲云杉对菌株6_70_1转录组的影响。
PAC菌株6_70_1在液体帕赫莱夫斯基培养基中培养,培养基由其寄主植物欧洲云杉诱导或无寄主植物作为对照。在有或无寄主植物诱导的情况下,按时间进程(1、2、3、4、7、11、18天)收获菌丝体,通过Illumina测序揭示真菌转录组。使用“edgeR glm方法”在每个时间点比较对照和处理的时间进程差异基因表达分析,并使用GO分类进行基因富集分析。
差异表达基因中的三个主要功能组为“代谢”“转运”和“细胞拯救、防御及毒力”。此外,通过基因集富集分析可检测到特别参与铁代谢的基因。
总之,我们发现PAC菌株6_70_1在其寄主植物欧洲云杉定殖期间代谢非常活跃。在本实验的时间进程中未观察到功能组的重大转变,但发现富集的GO分类根据诱导后天数显示出不同的侧重点。