Back

Plant pathogenic fungi hijack phosphate starvation signaling with conserved enzymatic effectors

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 biology
10.1101/2023.11.14.566975 bioRxiv
Show 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.

Matching journals

The top 1 journal accounts for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.