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Chaudy, C.

Publications and source records attributed to Chaudy, C..

2 recordsLinked to original sources

Two homologous Alt a1-like fungal proteins possess dual activities in HIR-associated immune signaling and EDS1-dependent cell death

Necrotrophic fungi secrete numerous Cell Death-Inducing Proteins (CDIPs) that manipulate host immunity to promote disease, yet the signaling pathways underlying their phytotoxic activity remain poorly understood. Here, we identify the Botrytis cinerea Hypersensitive response-inducing protein 1 (Hip1) as a close homolog of the recently described Sclerotinia sclerotiorum effector Plant Early Immunosuppressive Effector 1 (PEIE1) and investigate the molecular basis of its activity. HIP1 and PEIE1 share high sequence similarity and a conserved AlphaFold-predicted Alt a1-like fold, they interact with the Arabidopsis plasma membrane protein HIR4, and they induce strong necrosis in Nicotiana benthamiana. Despite their high structural similarity, Hip1 and PEIE1 differ in their reported roles during fungal infection. Unexpectedly, Hip1-induced cell death requires the central immune regulator ENHANCED DISEASE SUSCEPTIBILITY 1 (EDS1) as well as the downstream helper NLR network comprising ADR1 and NRG1. Together, our findings establish Hip1 as a closely related homolog of PEIE1 and suggest that these closely related Alt a1-like proteins possess dual activities: modulation of HIR-associated immune signaling and activation of EDS1-dependent host cell death.

plant biology↗

Gas5A, a putative glucanosyltransferase from Botrytis, functions as cell death inducing protein in plants

The necrotrophic fungus Botrytis cinerea, releases numerous phytotoxic, cell death inducing proteins (CDIPs) during infection. The precise role of these proteins and their molecular function, however, is still unknown. Here, we report on the identification of a previously unknown CDIP, the glucanosyltransferase Gas5A. Functional characterization revealed that the C-terminal 60 aa of Gas5A are sufficient to induce cell death, independent from its putative enzymatic function. Gas5A localization and functional dependence on the receptor-associated kinase suppressor of BIR1-1 (SOBIR1) and the plant defense regulator ENHANCED DISEASE SUSCEPTIBILITY 1 (EDS1) indicate recognition as a pathogen-associated molecular pattern (PAMP) at the plant plasma membrane, but it is toxic also when delivered inside plant cells. Generation of a CRISPR/Cas9-assisted Botrytis knockout strain did not indicate any impact of Gas5A on virulence. Taken together, Gas5A represents a novel PAMP-like CDIP with additional intracellular phytotoxic activity.

plant biology↗