Okmen Bilal, Collemare Jérôme, Griffiths Scott, van der Burgt Ate, Cox Russell, de Wit Pierre J G M
Laboratory of Phytopathology, Wageningen University, Droevendaalsesteeg 1, 6708 PB, Wageningen, The Netherlands.
Mol Microbiol. 2014 Apr;92(1):10-27. doi: 10.1111/mmi.12535. Epub 2014 Feb 27.
Fungal Wor1-like proteins are conserved transcriptional regulators that are reported to regulate the virulence of several plant pathogenic fungi by affecting the expression of virulence genes. Here, we report the functional analysis of CfWor1, the homologue of Wor1 in Cladosporium fulvum. Δcfwor1 mutants produce sclerotium-like structures and rough hyphae, which are covered with a black extracellular matrix. These mutants do not sporulate and are no longer virulent on tomato. A CE.CfWor1 transformant that constitutively expresses CfWor1 produces fewer spores with altered morphology and is also reduced in virulence. RNA-seq and RT-qrtPCR analyses suggest that reduced virulence of Δcfwor1 mutants is due to global downregulation of transcription, translation and mitochondrial respiratory chain. The reduced virulence of the CE.CfWor1 transformant is likely due to downregulation of effector genes. Complementation of a non-virulent Δfosge1 (Wor1-homologue) mutant of Fusarium oxysporum f. sp. lycopersici with CfWor1 restored expression of the SIX effector genes in this fungus, but not its virulence. Chimeric proteins of CfWor1/FoSge1 also only partially restored defects of the Δfosge1 mutant, suggesting that these transcriptional regulators have functionally diverged. Altogether, our results suggest that CfWor1 primarily regulates development of C. fulvum, which indirectly affects the expression of a subset of virulence genes.
真菌类Wor1样蛋白是保守的转录调节因子,据报道可通过影响毒力基因的表达来调节几种植物病原真菌的毒力。在此,我们报告了番茄叶霉病菌中Wor1的同源物CfWor1的功能分析。Δcfwor1突变体产生菌核样结构和粗糙的菌丝,其表面覆盖有黑色细胞外基质。这些突变体不产孢,对番茄不再具有毒力。组成型表达CfWor1的CE.CfWor1转化体产生的孢子数量减少且形态改变,毒力也降低。RNA测序和RT-qPCR分析表明,Δcfwor1突变体毒力降低是由于转录、翻译和线粒体呼吸链的整体下调。CE.CfWor1转化体毒力降低可能是由于效应子基因的下调。用CfWor1对尖孢镰刀菌番茄专化型的无毒Δfosge1(Wor1同源物)突变体进行互补,恢复了该真菌中SIX效应子基因的表达,但未恢复其毒力。CfWor1/FoSge1嵌合蛋白也仅部分恢复了Δfosge1突变体的缺陷,表明这些转录调节因子在功能上已经分化。总之,我们的结果表明CfWor1主要调节番茄叶霉病菌的发育,这间接影响了一部分毒力基因的表达。