Ma Meiqi, Guo Libin, Tu Chengjie, Wang Aoli, Xu Letian, Luo Jing
State Key Laboratory of Biocatalysis and Enzyme Engineering, School of Life Sciences, Hubei University, Wuhan, China.
Front Physiol. 2021 Mar 18;12:646721. doi: 10.3389/fphys.2021.646721. eCollection 2021.
The wide-spread culture of transgenic Bt cotton resisting the infamous cotton bollworms has reduced the adoption of broad-spectrum insecticides to a large extent. Consequently, the non-targeted insect Jakovlev has become a major cotton pest in China. Entomopathogenic microbes show promising results for controlling this pest in the future, but innate immune responses to these pathogens are poorly understood. Here, we used the entomopathogenic fungus and the Gram-negative pathogenic bacteria to infect nymphs, followed by high throughput RNA-seq to analyze the immune transcriptomes of in response to the two pathogens. A total of 150 immunity-related genes were identified, including pattern recognition receptors, extracellular signal modulators, signal pathways (Toll, IMD, JNK, and JAK/STAT), and response effectors. Further quantitative real-time PCR analysis demonstrated that and were recognized by different receptors (GNBP and PGRP, respectively); activated Toll pathway and IMD pathway respectively; and both induced expression of the effector gene Defensin. However, melanization is suppressed in -infected nymphs. Collectively, this study provides a transcriptomic snapshot of the immune system, and at the genetic level, gains multifaceted insights of the immune response to fungal and Gram-negative bacterial pathogens. Ultimately this work pioneers the study of molecular mechanisms underlying immune interactions between and its pathogens and assists in the development of novel mitigation strategies to control this pest.
广泛种植的转基因抗棉铃虫Bt棉花在很大程度上减少了广谱杀虫剂的使用。因此,非靶标昆虫烟粉虱在中国已成为主要的棉花害虫。昆虫病原微生物在未来控制这种害虫方面显示出有前景的结果,但对这些病原体的先天免疫反应了解甚少。在这里,我们使用昆虫病原真菌和革兰氏阴性病原菌感染若虫,随后通过高通量RNA测序分析烟粉虱对这两种病原体的免疫转录组。共鉴定出150个免疫相关基因,包括模式识别受体、细胞外信号调节剂、信号通路(Toll、IMD、JNK和JAK/STAT)以及反应效应器。进一步的定量实时PCR分析表明,烟粉虱对真菌和细菌的识别分别由不同的受体(GNBP和PGRP)介导;分别激活Toll通路和IMD通路;并且两者都诱导效应基因Defensin的表达。然而,在被真菌感染的若虫中黑化作用受到抑制。总的来说,这项研究提供了烟粉虱免疫系统的转录组概况,并在基因水平上对其对真菌和革兰氏阴性细菌病原体的免疫反应获得了多方面的见解。最终,这项工作开创了对烟粉虱与其病原体之间免疫相互作用分子机制的研究,并有助于开发控制这种害虫的新型缓解策略。