Department of Entomology, Texas A&M University, College Station, Texas, United States of America.
Department of Horticultural Sciences, Texas A&M University, College Station, Texas, United States of America.
PLoS One. 2023 Jun 16;18(6):e0287396. doi: 10.1371/journal.pone.0287396. eCollection 2023.
'Candidatus Liberibacter solanacearum' (Lso) is a bacterial pathogen infecting several crops and causing damaging diseases. Several Lso haplotypes have been identified. Among the seven haplotypes present in North America, LsoA and LsoB are transmitted by the potato psyllid, Bactericera cockerelli (Šulc), in a circulative and persistent manner. The gut, which is the first organ pathogen encounters, could be a barrier for Lso transmission. However, the molecular interactions between Lso and the psyllid vector at the gut interface remain largely unknown. In this study, we investigated the global transcriptional responses of the adult psyllid gut upon infection with two Lso haplotypes (LsoA and LsoB) using Illumina sequencing. The results showed that each haplotype triggers a unique transcriptional response, with most of the distinct genes elicited by the highly virulent LsoB. The differentially expressed genes were mainly associated with digestion and metabolism, stress response, immunity, detoxification as well as cell proliferation and epithelium renewal. Importantly, distinct immune pathways were triggered by LsoA and LsoB in the gut of the potato psyllid. The information in this study will provide an understanding of the molecular basis of the interactions between the potato psyllid gut and Lso, which may lead to the discovery of novel molecular targets for the control of these pathogens.
“甘蓝黄单胞菌加利福尼亚亚种”(Lso)是一种感染多种作物并导致破坏性疾病的细菌病原体。已经确定了几种 Lso 单倍型。在北美的七种单倍型中,LsoA 和 LsoB 通过马铃薯木虱,Bactericera cockerelli(Šulc)以循环和持续的方式传播。肠道是病原体首先遇到的器官,可能是 Lso 传播的障碍。然而,Lso 与粉虱媒介在肠道界面的分子相互作用在很大程度上仍然未知。在这项研究中,我们使用 Illumina 测序技术研究了感染两种 Lso 单倍型(LsoA 和 LsoB)后成年粉虱肠道的全局转录反应。结果表明,每种单倍型都引发了独特的转录反应,其中大多数由高毒力的 LsoB 引起的基因是独特的。差异表达的基因主要与消化和代谢、应激反应、免疫、解毒以及细胞增殖和上皮更新有关。重要的是,LsoA 和 LsoB 在马铃薯粉虱的肠道中触发了不同的免疫途径。本研究中的信息将提供对马铃薯粉虱肠道与 Lso 之间相互作用的分子基础的理解,这可能导致发现控制这些病原体的新的分子靶标。