Abstract
<jats:p>Genes encoding intracellular nucleotide-binding site leucine-rich repeat (NBS-LRR) receptors represent the largest class of resistance (R) genes in plants, yet their evolutionary trajectory in trees remains poorly understood. Using high-quality long-read genome assemblies from eight Myrtaceae species, we identified 15,792 NBS-encoding genes with threefold variation in gene content across species. To investigate potential decoy domains for effector proteins of pathogens, we parsed the annotated NBS-encoding genes and determined 181 unique non-canonical domains. Notably, we observed frequent integration of Jacalin domains into TIR-NBS proteins. This novel gene family, named TNJ, is hypothesized to represent a new class of R gene. Further exploration of TNJ sequence analysis shows up to seven Jacalin domains per protein and forming a monophyletic clade; however, AF3 modelling confirmed only six domains. Conserved residues in the TIR domain and functional motifs within the NB-ARC domain supports TNJ's potential role in immune signalling. Most hypervariable sites and positively selected sites detected to be surface-exposed were clustered in the Jacalin region of TNJ, suggesting that surfaces of Jacalin domain may harbour residues determining pathogen recognition specificity. These findings support TNJ as a potentially new class of R genes in Myrtaceae with Jacalin as a replacement for LRR.</jats:p>