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The transcription factor Zt107320 affects the dimorphic switch growth and virulence of the fungal wheat pathogen Zymoseptoria tritici

机译:转录因子Zt107320影响小麦真菌病原菌Zymoseptoria tritici的双态转换生长和毒力

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摘要

is a filamentous fungus causing Septoria tritici blotch in wheat. The pathogen has a narrow host range and infections of grasses other than susceptible wheat are blocked early after stomatal penetration. During these abortive infections, the fungus shows a markedly different gene expression pattern. However, the underlying mechanisms causing differential gene expression during host and non‐host interactions are largely unknown, but likely include transcriptional regulators responsible for the onset of an infection programme in compatible hosts. MoCOD1, a member of the fungal Zn(II) Cys transcription factor family, has been shown to directly affect pathogenicity in the rice blast pathogen . Here, we analyse the role of the putative transcription factor Zt107320, a homologue of MoCOD1, during infection of compatible and incompatible hosts by . We show for the first time that is differentially expressed in host versus non‐host infections and that lower expression corresponds to an incompatible infection of non‐hosts. Applying reverse genetics approaches, we further show that Zt107320 regulates the dimorphic switch as well as the growth rate of and affects fungal cell wall composition . Moreover, ∆ mutants showed reduced virulence during compatible infections of wheat. We conclude that Zt107320 directly influences pathogen fitness and propose that Zt107320 is involved in the regulation of growth processes and pathogenicity during infection.
机译:是一种丝状真菌,在小麦中引起小麦黑斑病。该病原体的寄主范围狭窄,气孔穿透后较早就阻止了除易感小麦以外的其他草类感染。在这些流产感染期间,真菌显示出明显不同的基因表达模式。但是,在宿主和非宿主相互作用期间引起差异基因表达的潜在机制尚不清楚,但可能包括负责在兼容宿主中启动感染程序的转录调节因子。 MoCOD1是真菌Zn(II)Cys转录因子家族的成员,已显示直接影响稻瘟病病原体的致病性。在这里,我们分析了在感染兼容和不兼容宿主期间推定的转录因子Zt107320(MoCOD1的同源物)的作用。我们首次显示在宿主和非宿主感染中差异表达,而较低的表达对应于非宿主感染的不相容。应用反向遗传学方法,我们进一步证明Zt107320调节双态开关以及其生长速率并影响真菌细胞壁的组成。此外,Δ突变体在小麦兼容感染期间显示出降低的毒力。我们得出的结论是Zt107320直接影响病原体适应性,并建议Zt107320参与感染过程中生长过程和致病性的调节。

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