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Orbovic, V.

Publications and source records attributed to Orbovic, V..

2 recordsLinked to original sources

NONEXPRESSOR OF PATHOGENESIS-RELATED GENES control Huanglongbing tolerance by regulating immune balance in citrus plants

Huanglongbing (HLB) is a devastating citrus disease caused by the phloem-resident bacterial pathogen Candidatus liberibacter asiaticus (CLas). CLas infection of susceptible varieties triggers unbalanced immune responses, leading to overaccumulation of callose and reactive oxygen species (ROS), which in turn causes phloem plugging and HLB symptom development. Interestingly, some citrus relatives exhibit little or no symptoms in the presence of CLas, a phenomenon termed HLB tolerance. Moreover, overexpression of the Arabidopsis thaliana NPR1 (AtNPR1) gene in susceptible varieties has been shown to confer robust HLB tolerance. However, the mechanisms underlying HLB tolerance remain enigmatic. Here, we show that overexpression of AtNPR1 suppresses CLas- and Pseudomonas syringae pv. maculicola ES4326 (Psm)-induced overaccumulation of callose and ROS in citrus and Arabidopsis, respectively. Importantly, we found that knocking out of the Arabidopsis negative immune regulators, AtNPR3 and AtNPR4, and silencing of their Citrus sinensis ortholog CsNPR3, similarly suppress Psm- and CLas-induced callose and ROS overaccumulation, respectively, and that silencing of CsNPR3 also enhances HLB tolerance. These results reveal a conserved role of the NPR1/NPR3/NPR4-mediated signaling pathway in regulating plant immune balances and provide mechanistic support for overexpression of AtNPR1 or silencing of AtNPR3/AtNPR4 orthologs in citrus as a long-term solution to the HLB disease.

plant biology↗

Multiplexed gene editing with a multi-intron containing Cas9 gene in citrus

The citrus industry holds significant economic importance in Florida, being one of the leading producers of oranges and grapefruits in the United States. However, several diseases, such as canker and huanglongbing along with natural disasters like hurricanes have rigorously affected citrus production, quality, and yield. Improving citrus through traditional breeding methods requires significant challenges due to time constraints and complexity in genetic enhancements. To overcome these limitations, several expression systems have been developed in clustered regularly interspaced short palindromic repeats (CRISPR)-associated protein 9 (CRISPR/Cas9) framework allowing for gene editing of disease-associated genes across diverse citrus varieties. In this study, we present a new approach employing a multi-intron containing Cas9 gene plus multiple gRNAs separated with tRNA sequences to target the phytoene desaturase (PDS) gene in both Carrizo citrange and Duncan grapefruit. Notably, using this unified vector significantly boosted editing efficiency in both citrus varieties, showcasing mutations in all three designated targets. The implementation of this multiplex gene editing system with a multi-intron-containing Cas9 plus a gRNA-tRNA array demonstrates a promising avenue for efficient citrus genome editing, equipping us with potent tools in the ongoing battle against HLB. Statements and DeclarationsO_ST_ABSCompeting interestsC_ST_ABSThe authors declare that they have no competing interests. Supplementary InformationSupplementary File 1

plant biology↗