Department of Biotechnology and Life Sciences, University of Insubria, Varese, Italy.
Department of Entomology, Faculty of Science, Cairo University, Giza, Egypt.
Arch Insect Biochem Physiol. 2024 Aug;116(4):e22146. doi: 10.1002/arch.22146.
T2 RNases are transferase-type enzymes distributed across phyla, crucial for breaking down single-stranded RNA molecules. In addition to their canonical function, several T2 enzymes exhibit pleiotropic roles, contributing to various biological processes, such as the immune response in invertebrates and vertebrates. This study aims at characterizing RNASET2 in the larvae of black soldier fly (BSF), Hermetia illucens, which are used for organic waste reduction and the production of valuable insect biomolecules for feed formulation and other applications. Given the exposure of BSF larvae to pathogens present in the feeding substrate, it is likely that the mechanisms of their immune response have undergone significant evolution and increased complexity. After in silico characterization of HiRNASET2, demonstrating the high conservation of this T2 homolog, we investigated the expression pattern of the enzyme in the fat body and hemocytes, two districts mainly involved in the insect immune response, in larvae challenged with bacterial infection. While no variation in HiRNASET2 expression was observed in the fat body following infection, a significant upregulation of HiRNASET2 synthesis occurred in hemocytes shortly after the injection of bacteria in the larva. The intracellular localization of HiRNASET2 in lysosomes of plasmatocytes, its extracellular association with bacteria, and the presence of a putative antimicrobial domain in the molecule, suggest its potential role in RNA clean-up and as an alarm molecule promoting phagocytosis activation by hemocytes. These insights contribute to the characterization of the immune response of Hermetia illucens larvae and may facilitate the development of animal feedstuff enriched with highly valuable BSF bioactive compounds.
T2 RNases 是一种分布在各个门的转移酶型酶,对于分解单链 RNA 分子至关重要。除了其典型功能外,几种 T2 酶还表现出多效性作用,有助于各种生物学过程,如无脊椎动物和脊椎动物的免疫反应。本研究旨在表征黑蝇(BSF)幼虫中的 RNASET2,Hermetia illucens 用于减少有机废物并生产有价值的昆虫生物分子用于饲料配方和其他应用。鉴于 BSF 幼虫暴露于饲料基质中存在的病原体,它们的免疫反应机制很可能经历了显著的进化和复杂性增加。在对 HiRNASET2 进行计算机模拟特征描述,证明了这种 T2 同源物的高度保守性后,我们研究了该酶在脂肪体和血细胞中的表达模式,这两个区室主要参与昆虫的免疫反应,在幼虫受到细菌感染时。虽然在感染后脂肪体中 HiRNASET2 的表达没有变化,但在幼虫体内注射细菌后,血细胞中 HiRNASET2 合成的显著上调。HiRNASET2 在浆血细胞溶酶体中的细胞内定位、与细菌的细胞外关联以及分子中存在假定的抗菌结构域,表明其在 RNA 清理和作为警报分子促进血细胞吞噬作用激活方面的潜在作用。这些见解有助于表征 Hermetia illucens 幼虫的免疫反应,并可能有助于开发富含高价值 BSF 生物活性化合物的动物饲料。