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Molecular Biology Reports


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2

CitationNamesAbstract
Identification and gene expression profiling of toll genes in the potato psyllid (Bactericera cockerelli) in response to ‘Candidatus liberibacter solanacearum’ Hrithik et al. (2026). Molecular Biology Reports 53 (1) “Liberibacter solanacearum”
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Accumulation and transmission dynamics of ‘Candidatus liberibacter solanacearum’ haplotypes A and B by potato psyllid nymphs: bioassay and transcriptomic insights Oh et al. (2026). Molecular Biology Reports 53 (1) “Liberibacter solanacearum”
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Identification and gene expression profiling of toll genes in the potato psyllid (Bactericera cockerelli) in response to ‘Candidatus liberibacter solanacearum’
Abstract Background The Toll signaling pathway is a key component of insect innate immunity, yet its role in hemipteran vectors and their interactions with plant pathogens remains poorly understood. The potato psyllid ( Bactericera cockerelli ), an important agricultural pest in the USA, transmits two haplotypes of ‘Candidatus Liberibacter solanacearum ’ (LsoA and LsoB) that cause severe diseases in solanaceous crops. Methods and Results We characterized Toll pathway components in the B. cockerelli genome and examined their transcriptional responses during pathogen acquisition. Six Toll receptors and ten pathway-associated genes were identified in the psyllid genome. Gene expression was evaluated using RT-qPCR following exposure to the entomopathogenic fungus Beauveria bassiana (Bb-490) and infection with Lso haplotypes. The transcription of five Toll receptors was significantly induced in response to B. bassiana , indicating their potential role in antifungal defense. In contrast, Lso infection elicited haplotype-specific transcriptional responses: two Toll receptors (Toll like-1 and Toll-7) were up-regulated during LsoB acquisition, whereas only Toll-7 responded to LsoA. In addition, Spätzle-3 was induced by LsoB, while Spätzle was induced by LsoA. Persistent Lso infection did not significantly alter the transcriptional expression of Toll receptors. Conclusions These findings provide new insights into immune regulation in B. cockerelli and highlight the potential of targeting Toll-mediated responses and fungal biocontrol strategies for sustainable disease management.
Accumulation and transmission dynamics of ‘Candidatus liberibacter solanacearum’ haplotypes A and B by potato psyllid nymphs: bioassay and transcriptomic insights
Abstract Background ‘ Candidatus Liberibacter solanacearum’ (Lso) is a phloem-limited bacterial pathogen causing significant diseases in solanaceous crops. In the United States, haplotypes A and B are transmitted by the potato psyllid Bactericera cockerelli . We previously identified differences in their acquisition and transmission between adults and nymphs. The present study characterized the dynamics of LsoA and LsoB acquisition and transmission by nymphs and examined the transcriptional responses of the nymphal gut upon their acquisition. Methods and results Nymphs were exposed to LsoA- or LsoB-infected plants for 1, 3, 5, or 7 days to measure the bacterial accumulation and for 8 days to assess the transmission efficiency following sequential inoculation of tomato plants. Quantitative PCR showed that LsoB accumulated to higher levels than LsoA after 3 days of acquisition. Following the sequential inoculation, LsoB was transmitted earlier than LsoA indicating a shorter latency period. RNA-seq analysis of the guts following a 1- and 5-day acquisition access periods revealed a greater transcriptional regulation at 5 days than at 1 day. Furthermore, the responses were haplotype-specific: LsoA primarily affected genes involved in protein translation, ER stress, and cell cycle regulation, whereas LsoB regulated genes involved in autophagy, apoptosis, and immune pathways. Conclusions This study revealed haplotype-specific gene regulation potentially leading to LsoB being transmitted more efficiently by psyllid nymphs.
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