Interactions of sequence diverse effector proteins of wheat powdery mildew control recognition specificity by the corresponding immune receptor
Isaksson, J.; Heuberger, M.; Amhof, M.; Kunz, L.; Bourras, S.; Keller, B.
Show abstract
To successfully colonize the living tissue of its host, the fungal wheat powdery mildew pathogen produces diverse effector proteins that are suggested to reprogram host defense responses and physiology. When recognized by host immune receptors, these proteins become avirulence (AVR) effectors. Several sequence-diverse AVRPM3 effectors and the suppressor of AVRPM3-PM3 recognition (SVRPM3a1/f1) are involved in triggering allele-specific, Pm3-mediated resistance, but the molecular mechanisms controlling their function in the host cell remain unknown. Here, we describe that AVRPM3b2/c2, AVRPM3a2/f2 and SVRPM3a1/f1 form homo- and heteromeric complexes with each other, suggesting they are present as dimers in the host cell. Alphafold2 modelling substantiated previous predictions that AVRPM3b2/c2, AVRPM3a2/f2 and SVRPM3a1/f1 all adopt a core RNase-like fold. We found that a single amino acid mutation in a predicted surface exposed region of AVRPM3a2/f2 resulted in recognition by the PM3b immune receptor, which does not recognize wildtype AVRPM3a2/f2. This indicates that differential AVRPM3 recognition by variants of the highly related PM3 immune receptors is due to subtle differences in similar protein surfaces of sequence-diverse AVRs. Based on our findings, we propose a model in which homodimers of AVRPM3s are recognized by their corresponding PM3 variants and that heterodimer formation with SVRPM3a1/f1 allows for evasion of recognition.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The Arabidopsis WRR4A and WRR4B paralogous NLR proteins both confer recognition of multiple Albugo candida effectors 97%
- The Ralstonia solanacearum effector RipAV targets Plant U-box proteins and induces proteasomal-dependent degradation of BIK1 96%
- Guanosine-specific single-stranded ribonuclease effectors of a phytopathogenic fungus potentiate host immune responses 95%
Similar papers in this journal
- Allelic compatibility in plant immune receptors facilitates engineering of new effector recognition specificities. 97%
- Bioengineering secreted proteases converts divergent Rcr3 orthologs and paralogs into extracellular immune co-receptors 97%
- The blast effector Pwl2 is a virulence factor that modifies the cellular localisation of host protein HIPP43 to suppress immunity. 96%
Similar papers in this journal
- Three LysM effectors of Zymoseptoria tritici collectively disarm chitin-triggered plant immunity 96%
- AvrE1 and HopR1 from Pseudomonas syringae pv. actinidiae are additively required for full virulence on kiwifruit 95%
- The recognition of YopJ family effectors depends on ZAR1/JIM2 immune complex in Nicotiana benthamiana. 95%
Similar papers in this journal
Similar papers in this journal
- Cloning of the rice Xo1 resistance gene and interaction of the Xo1 protein with the defense-suppressing Xanthomonas effector Tal2h 96%
- Defence recognition of a stripe rust fungal effector is uncoupled from disease outcomes in wheat 96%
- The Zymoseptoria tritici avirulence factor AvrStb6 accumulates in hyphae close to stomata and triggers a wheat defense response hindering fungal penetration 95%
"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.