Abstract
Antimicrobial peptides (AMPs) are widely used in disease-resistant breeding, and their application in citrus has recently been reported. However, the molecular mechanism by which AMPs inhibit the Huanglongbing (HLB) remains unclear. This study aimed to clarify the inhibitory mechanism of Hinnavin I (an AMP) against HLB-associated pathogens. We first demonstrated that Hinnavin I exhibits antibacterial activity against several tested Gram-negative bacterial strains. Using a transgenic citrus hairy root system, the heterologous expression of Hinnavin I was found to significantly reduce Candidatus Liberibacter asiaticus (CLas) colonization. Transcriptomic and phytohormone analyses further showed that constitutive Hinnavin I expression was associated with altered defense-related gene expression and enhanced SA-related responses in citrus hairy roots. Multiple interaction assays identified the CLas outer membrane lipoprotein Omlp as a direct interaction partner of Hinnavin I both in vitro and in vivo.