College of Plant Protection, Yangzhou University, Wenhui East Road, NO. 48, Yangzhou 225009, PR China.
State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, NO. 2 of West Yuanmingyuan Road, Beijing 100193, PR China.
Int J Biol Macromol. 2024 Apr;264(Pt 2):130778. doi: 10.1016/j.ijbiomac.2024.130778. Epub 2024 Mar 11.
High population density has been shown to alter insect prophylactic immunity. Toll-Spätzle pathway performs a key function in insect innate immune response. To determine the role of Toll and Spätzle, two main components of Toll-Spätzle pathway, in the density-dependent prophylaxis of Mythimna separata. We identified full-length cDNA encoding the Toll-1 and Spätzle-4 genes in M. separata (designed MsToll-1 and Ms Spätzle-4). Both MsToll-1 and MsSpätzle-4 were expressed throughout all developmental stages. MsToll-1 expression was highly in fat body and brain and MsSpätzle-4 was highly expressed in brain and Malpighian tubule. With increased larval density, MsToll-1 expression was markedly up-regulated. MsSpätzle-4 expression was found to be raised in larvae that were fed in high density (5 and 10 larvae per jar). Co-immunoprecipitation assays demonstrated that MsToll-1 interacted with MsSpätzle-4. Immune-related genes transcriptions were considerably reduced in high-density larvae MsToll-1 (or MsSpätzle-4) was silenced by dsRNA injection. Meanwhile, a discernible reduction in the survival rate of the larvae exposed to Bacillus thuringiensis infection with silence of MsToll-1 (or MsSpätzle-4) was observed. This study implies that prophylactic immunity was influenced by crowded larvae via modulating the Toll-Spätzle pathway in M. separata and allow for a new understanding of into density-dependent prophylaxis in insects.
高人口密度已被证明会改变昆虫的预防性免疫。Toll-Spätzle 途径在昆虫先天免疫反应中起着关键作用。为了确定 Toll 和 Spätzle(Toll-Spätzle 途径的两个主要组成部分)在斜纹夜蛾密度依赖性预防中的作用。我们在斜纹夜蛾中鉴定出全长 cDNA 编码 Toll-1 和 Spätzle-4 基因(设计为 MsToll-1 和 MsSpätzle-4)。MsToll-1 和 MsSpätzle-4 在所有发育阶段均有表达。MsToll-1 在脂肪体和脑中高度表达,而 MsSpätzle-4 在脑中高度表达。随着幼虫密度的增加,MsToll-1 的表达明显上调。发现 MsSpätzle-4 的表达在高密度(每罐 5 或 10 个幼虫)喂养的幼虫中升高。免疫沉淀分析表明 MsToll-1 与 MsSpätzle-4 相互作用。高浓度幼虫 MsToll-1(或 MsSpätzle-4)沉默的 dsRNA 注射导致免疫相关基因转录明显减少。同时,沉默 MsToll-1(或 MsSpätzle-4)的幼虫在感染苏云金芽孢杆菌后存活率明显降低。这项研究表明,通过调节斜纹夜蛾中的 Toll-Spätzle 途径,拥挤的幼虫会影响预防性免疫,从而为昆虫的密度依赖性预防提供新的认识。