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Authors Stelinski

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Stelinski, Lukasz L.


Publications
4

CitationNamesAbstract
A peptide that binds the Asian citrus psyllid gut reduces transmission of the citrus greening pathogen Candidatus Liberibacter asiaticus Roy et al. (2026). Applied and Environmental Microbiology “Liberibacter asiaticus”
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Evaluation of tree‐injected oxytetracycline and antisense oligonucleotides targeting <scp>Candidatus</scp> Liberibacter asiaticus in citrus Roldán et al. (2025). Pest Management Science 81 (3) “Liberibacter asiaticus”
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Sexual Transmission of a Plant Pathogenic Bacterium, Candidatus Liberibacter asiaticus, between Conspecific Insect Vectors during Mating Mann et al. (2011). PLoS ONE 6 (12) “Liberibacter asiaticus”
Incidence of Candidatus Liberibacter asiaticus Infection in Abandoned Citrus Occurring in Proximity to Commercially Managed Groves Tiwari et al. (2010). Journal of Economic Entomology 103 (6) “Liberibacter asiaticus”

A peptide that binds the Asian citrus psyllid gut reduces transmission of the citrus greening pathogen Candidatus Liberibacter asiaticus
ABSTRACT Citrus greening disease, associated with the bacterium Candidatus Liberibacter asiaticus ( C Las), has severely impacted citrus yields on a global scale. C Las is vectored by the Asian citrus psyllid, Diaphorina citri Kuwayama, in a circulative and propagative manner. Extensive application of chemical insecticides for suppression of psyllid populations has resulted in widespread resistance. Despite considerable effort and expenditure, citrus greening disease continues to impair citrus production. For transmission to occur, C Las must bind and infect the psyllid vector via the gut epithelium, but little is known of the specific molecular interactions involved. By screening a phage display library, we selected ten psyllid gut binding peptides, a subset of which have sequence similarity to C Las surface proteins. Peptide binding to the surface of the psyllid gut epithelium was confirmed by identification of gut proteins bound by specific peptides. We evaluated whether these peptides could interfere with the interaction between C Las and the gut epithelium of D. citri , thereby impeding pathogen transmission. Peptide DcNy2 significantly reduced C Las acquisition and inoculation by D. citri compared to control treatments. Nymphs fed specific peptides exhibited reduced C Las acquisition and infection of both the alimentary canal and salivary glands without negatively impacting psyllid fecundity, development, or survival. These results support peptide-mediated disruption of C Las transmission by D. citri as a potential component of integrated strategies to manage citrus greening disease. IMPORTANCE Citrus greening disease, or huanglongbing, causes billions of dollars in losses and represents one of the greatest challenges facing global citrus production. Despite significant investment on multiple fronts, effective disease management strategies are lacking. This study shows for the first time that short peptides that bind to the surface of the gut of the Asian citrus psyllid vector interfere with C Las association with the gut. This critical first gut binding step is required for C Las to infect and propagate within the psyllid vector. The downstream consequence of this peptide-mediated interference is reduced acquisition and transmission of the citrus pathogen. This work provides the foundation for new transgenic or paratransgenic tools for use in the management of citrus greening disease.
Evaluation of tree‐injected oxytetracycline and antisense oligonucleotides targeting <scp>Candidatus</scp> Liberibacter asiaticus in citrus
AbstractBACKGROUNDHuanglongbing (HLB) is a systemic disease of citrus caused by the bacterial pathogen Candidatus Liberibacter asiaticus (CLas) that limits citrus production worldwide. CLas is an obligate bacterial pathogen that multiplies in citrus trees and in the insect vector, the Asian citrus psyllid (ACP), Diaphorina citri Kuwayama. There is no cure for HLB currently and broad‐spectrum antibiotics represent one possible therapeutic against disease symptoms. Single‐stranded nucleic acid analogs, 2′‐deoxy‐2’‐Fluoro‐β‐D‐arabinonucleic antisense oligonucleotides (FANA ASOs), can modulate gene expression by enzymatic degradation or steric blocking of an RNA target. FANA ASOs recognize and bind to specific RNA forms, including mRNA, miRNA and long noncoding RNA, through complementary base‐pairing.RESULTSInjection of oxytetracycline (OTC) into mature citrus trees with HLB ameliorated symptoms of disease, increased fruit yield and quality of juice as compared with that produced by noninjected controls. Injection of trees with FANA ASOs reduced CLas abundance but did not improve fruit yield and quality above control levels at the injection dosage tested. Reduced pathogen relative abundance following OTC injection was coincident with lower CLas acquisition and inoculation by laboratory deployed and wild‐type D. citri collected from the field, respectively. However, injections of FANA ASOs did not consistently reduce CLas transmission as compared with noninjected controls.CONCLUSIONSTrunk injection of OTC may be useful in management of HLB by reducing CLas infection in trees and disrupting transmission. However, more research is needed to verify the potential usefulness of FANA ASOs. Optimizing FANA ASO dosage in trees and exploring the potential of multiplex FANA ASOs that simultaneously target multiple mRNAs could possibly enhance their efficacy against CLas. © 2024 Society of Chemical Industry.
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