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IKKβ 调控黄粉虫 Tenebrio molitor 的抗菌先天免疫反应。

IKKβ regulates antimicrobial innate immune responses in the yellow mealworm, Tenebrio molitor.

机构信息

Division of Plant Biotechnology, Institute of Environmentally-Friendly Agriculture (IEFA), College of Agriculture and Life Sciences, Chonnam National University, Gwangju, 61186, Republic of Korea.

Department of Biology, College of Natural Sciences, Soonchunhyang University, Asan City, 31538, Republic of Korea.

出版信息

Dev Comp Immunol. 2023 Oct;147:104761. doi: 10.1016/j.dci.2023.104761. Epub 2023 Jun 16.

Abstract

Toll and IMD pathways regulate antimicrobial innate immune responses in insect model systems. The transcriptional activation of antimicrobial peptides (AMPs) confers humoral immunity in the host against invaded pathogens. The IKK kinase complex (IKKα, IKKβ, and the regulatory subunit IKKγ/NEMO) centrally regulates the NF-κB response to various stimuli. It triggers an appropriate antimicrobial immune response in the host. In this study, a TmIKKβ (or TmIrd5) homolog was screened from the RNA-seq database of the coleopteran beetle, Tenebrio molitor. A single exon characterizes the TmIKKβ gene, and the open reading frame (ORF) comprises of 2112 bp that putatively encodes a polypeptide of 703 amino acid residues. TmIKKβ contains a serine/threonine kinase domain and is phylogenetically close to Tribolium castaneum IKKβ homolog (TcIKKβ). TmIKKβ transcripts were highly expressed in the early pupal (P1) and adult (A5) stages. Among the tissues, TmIKKβ showed higher expression in the integument of the last instar larvae and the fat body and hemocytes of 5-day-old adults. TmIKKβ mRNA was upregulated post-E. coli challenge to the host. Moreover, RNAi-based TmIKKβ mRNA silencing increased host larvae' susceptibility against E. coli, S. aureus and C. albicans. TmIKKβ RNAi in the fat body led to a downregulation in mRNA expression of ten out of fourteen AMP genes, including TmTenecin1, -2, and -4; TmDefensin, and -like; TmColeoptericinA, and -B; and TmAttacin1a, -1b, and -2, suggesting the requirement of the gene in antimicrobial innate immune responses. Further, a decrease in the mRNA expression of NF-κB factors such as TmRelish, TmDorsal1, and TmDorsal2 in the fat body of T. molitor larvae was observed post-microorganisms challenge. Thus, TmIKKβ regulates antimicrobial innate immune responses in T. molitor.

摘要

Toll 和 IMD 途径调节昆虫模型系统中的抗菌先天免疫反应。抗菌肽 (AMP) 的转录激活赋予宿主针对入侵病原体的体液免疫。IKK 激酶复合物 (IKKα、IKKβ 和调节亚基 IKKγ/NEMO) 集中调节 NF-κB 对各种刺激的反应。它在宿主中引发适当的抗菌免疫反应。在这项研究中,从鞘翅目甲虫黄粉虫的 RNA-seq 数据库中筛选出 TmIKKβ (或 TmIrd5) 同源物。一个单一的外显子特征化了 TmIKKβ 基因,开放阅读框 (ORF) 由 2112bp 组成,推测编码 703 个氨基酸残基的多肽。TmIKKβ包含丝氨酸/苏氨酸激酶结构域,并且在系统发育上与 Tribolium castaneum IKKβ 同源物 (TcIKKβ) 接近。TmIKKβ 转录本在早期蛹 (P1) 和成虫 (A5) 阶段高度表达。在组织中,TmIKKβ在最后一龄幼虫的表皮和 5 日龄成虫的脂肪体和血细胞中表达较高。在宿主受到大肠杆菌挑战后,TmIKKβmRNA 上调。此外,基于 RNAi 的 TmIKKβ mRNA 沉默增加了宿主幼虫对大肠杆菌、金黄色葡萄球菌和白色念珠菌的易感性。脂肪体中的 TmIKKβ RNAi 导致 14 个 AMP 基因中的 10 个基因的 mRNA 表达下调,包括 TmTenecin1、-2 和 -4;TmDefensin 和 -like;TmColeoptericinA、-B 和 -attacin1a、-1b 和 -2,表明该基因在抗菌先天免疫反应中的必要性。此外,在黄粉虫幼虫脂肪体中观察到微生物挑战后 NF-κB 因子如 TmRelish、TmDorsal1 和 TmDorsal2 的 mRNA 表达减少。因此,TmIKKβ 调节黄粉虫的抗菌先天免疫反应。

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