He Ruifeng, Fisher Tonja W, Saha Surya, Peiz-Stelinski Kirsten, Willis Mark A, Gang David R, Brown Judith K
Institute of Biological Chemistry, Washington State University, Pullman, WA, United States.
Soybean Genomics and Improvement Laboratory, US Department of Agriculture (USDA)-Agricultural Research Service (ARS), Beltsville, MD, United States.
Front Plant Sci. 2023 Aug 17;14:1229620. doi: 10.3389/fpls.2023.1229620. eCollection 2023.
The bacterial pathogen Liberibacter asiaticus (CLas) is the causal agent of citrus greening disease. This unusual plant pathogenic bacterium also infects its psyllid host, the Asian citrus psyllid (ACP). To investigate gene expression profiles with a focus on genes involved in infection and circulation within the psyllid host of CLas, RNA-seq libraries were constructed from CLas-infected and CLas-free ACP representing the five different developmental stages, namely, nymphal instars 1-2, 3, and 4-5, and teneral and mature adults. The Gbp paired-end reads (296) representing the transcriptional landscape of ACP across all life stages and the official gene set (OGSv3) were annotated based on the chromosomal-length v3 reference genome and used for transcript discovery resulting in 25,410 genes with 124,177 isoforms. Differential expression analysis across all ACP developmental stages revealed instar-specific responses to CLas infection, with greater overall responses by nymphal instars, compared to mature adults. More genes were over-or under-expressed in the 4-5 nymphal instars and young (teneral) adults than in instars 1-3, or mature adults, indicating that late immature instars and young maturing adults were highly responsive to CLas infection. Genes identified with potential for direct or indirect involvement in the ACP-CLas circulative, propagative transmission pathway were predominantly responsive during early invasion and infection processes and included canonical cytoskeletal remodeling and endo-exocytosis pathway genes. Genes with predicted functions in defense, development, and immunity exhibited the greatest responsiveness to CLas infection. These results shed new light on ACP-CLas interactions essential for pathogenesis of the psyllid host, some that share striking similarities with effector protein-animal host mechanisms reported for other culturable and/or fastidious bacterial- or viral- host pathosystems.
细菌性病原菌亚洲韧皮杆菌(CLas)是柑橘黄龙病的致病因子。这种不同寻常的植物致病细菌还会感染其木虱宿主——亚洲柑橘木虱(ACP)。为了研究基因表达谱,重点关注参与CLas在木虱宿主内感染和循环的基因,我们从感染CLas和未感染CLas的ACP构建了RNA测序文库,这些ACP代表了五个不同的发育阶段,即1 - 2龄若虫、3龄若虫、4 - 5龄若虫、嫩成虫和成熟成虫。基于染色体长度v3参考基因组对代表ACP所有生命阶段转录图谱的296个Gbp双端读数和官方基因集(OGSv3)进行注释,并用于转录本发现,结果得到了25410个基因和124177个异构体。对所有ACP发育阶段的差异表达分析显示,若虫对CLas感染有特定龄期反应,与成熟成虫相比,若虫期的总体反应更大。与1 - 3龄若虫或成熟成虫相比,4 - 5龄若虫和嫩成虫中更多的基因表达上调或下调,这表明未成熟后期若虫和刚成熟的成虫对CLas感染高度敏感。在ACP - CLas循环、增殖传播途径中直接或间接参与的潜在基因,在早期入侵和感染过程中主要有反应,包括典型的细胞骨架重塑和胞吞 - 胞吐途径基因。在防御、发育和免疫方面具有预测功能的基因对CLas感染反应最大。这些结果为木虱宿主发病机制中至关重要ACP - CLas相互作用提供了新的见解,其中一些与其他可培养和/或苛求细菌或病毒宿主病理系统中报道的效应蛋白 - 动物宿主机制有显著相似之处。