bioRxiv · 10.1101/2023.11.14.566975
Plant pathogenic fungi hijack phosphate starvation signaling with conserved enzymatic effectors
Abstract
Phosphate availability modulates plant immune function and regulates interactions with beneficial, phosphate-providing, microbes. Here, we describe the hijacking of plant phosphate sensing by a family of Nudix hydrolase effectors from pathogenic Magnaporthe oryzae and Colletotrichum fungi. Structural and enzymatic analyses of the Nudix effector family demonstrate that they selectively hydrolyze inositol pyrophosphates, a molecule used by plants to monitor phosphate status and regulate starvation responses. In M. oryzae, gene deletion and complementation experiments reveal that the enzymatic activity of a Nudix effector significantly contributes to pathogen virulence. Further, we show that this conserved effector family induces phosphate starvation signaling in plants. Our study elucidates a molecular mechanism, utilized by multiple phytopathogenic fungi, that manipulates the highly conserved plant phosphate sensing pathway to exacerbate disease. One-Sentence SummaryA family of conserved enzyme effectors from pathogenic fungi manipulate plant phosphate sensing to promote infection.
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McCombe, C. L., Wegner, A., Zamora, C. S., Casanova, F., Aditya, S., Greenwood, J. R., Wirtz, L., de Paula, S., England, E., Shang, S., Ericsson, D. J., Oliveira-Garcia, E., Williams, S. J., Schaffrath, U.. 2023-11-14. Plant pathogenic fungi hijack phosphate starvation signaling with conserved enzymatic effectors. https://doi.org/10.1101/2023.11.14.566975
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