bioRxiv · 10.1101/2025.05.22.655486
MIK2 clade receptor function in perception of a Fusarium-derived elicitor is conserved among different plant families
Abstract
Plants continuously monitor their environment to adapt to threats affecting health and fitness. Cell-surface receptors detect conserved microbe-associated molecular patterns (MAMPs) or endogenous immunogenic signals to activate signaling pathways that induce broad-spectrum disease resistance, known as pattern-triggered immunity (PTI). In Arabidopsis thaliana, the leucine-rich repeat receptor kinase MIK2 emerged as a versatile receptor involved in perceiving endogenous SCOOP peptides as well as potential MAMPs derived from Fusarium and related fungi. While SCOOP perception appears restricted to Brassicales, the Fusarium-derived elicitor triggers PTI-responses across different plant lineages. Here, we demonstrate that Fusarium elicitor-responsiveness and MIK2-clade proteins are conserved among seed plants. We identified a tomato MIK2-clade receptor that shares AtMIK2 properties in perceiving the Fusarium elicitor, but not SCOOPs. Tomato mutants lacking the receptor show compromised PTI-responses to the fungal elicitor and increased susceptibility to Fusarium oxysporum. By integrating AI-assisted structural prediction with experimental data, we identify conserved and variable residues in Arabidopsis and tomato MIK2-clade receptors that may underlie shared and lineage-specific recognition specificities. Together, these findings establish MIK2-clade receptors as immune surveillance modules that have undergone lineage-specific diversification, supporting a model in which endogenous danger perception might have evolved from an ancestral role in microbial pattern recognition.
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Maroschek, J., Roesgen, Y., Roessner, C., Snoeck, S., Schwechheimer, C., Zipfel, C., Hueckelhoven, R.. 2025-05-23. MIK2 clade receptor function in perception of a Fusarium-derived elicitor is conserved among different plant families. https://doi.org/10.1101/2025.05.22.655486
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