真菌感染后亚洲蜜蜂幼虫中环状RNA的动态变化及调控作用

Dynamics and regulatory role of circRNAs in Asian honey bee larvae following fungal infection.

作者信息

Guo Rui, Zhang Kaiyao, Zang He, Guo Sijia, Liu Xiaoyu, Jing Xin, Song Yuxuan, Li Kunze, Wu Ying, Jiang Haibing, Fu Zhongmin, Chen Dafu

机构信息

College of Bee Science and Biomedicine, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.

National & Local United Engineering Laboratory of Natural Biotoxin, Fuzhou, 350002, China.

出版信息

Appl Microbiol Biotechnol. 2024 Mar 13;108(1):261. doi: 10.1007/s00253-024-13102-9.

Abstract

Non-coding RNA (ncRNA) plays a vital part in the regulation of immune responses, growth, and development in plants and animals. Here, the identification, characteristic analysis, and molecular verification of circRNAs in Apis cerana cerana worker larval guts were conducted, followed by in-depth investigation of the expression pattern of larval circRNAs during Ascosphaera apis infection and exploration of the potential regulatory part of differentially expressed circRNAs (DEcircRNAs) in host immune responses. A total of 3178 circRNAs in the larval guts of A. c. cerana were identified, with a length distribution ranging from 15 to 96,007 nt. Additionally, 155, 95, and 86 DEcircRNAs were identified in the in the 4-, 5-, and 6-day-old larval guts following A. apis infection. These DEcircRNAs were predicted to target 29, 25, and 18 parental genes relevant to 12, 20, and 17 GO terms as well as 144, 114, and 61 KEGG pathways, including 5 cellular and 4 humoral immune pathways. Complex competing endogenous RNA (ceRNA) regulatory networks were detected as being formed among DEcircRNAs, DEmiRNAs, and DEmRNAs. The target DEmRNAs were engaged in 36, 47, and 47 GO terms as well as 331, 332, and 331 pathways, including 6 cellular and 6 humoral immune pathways. Further, 19 DEcircRNAs, 5 DEmiRNAs, and 3 mRNAs were included in the sub-networks relative to 3 antioxidant enzymes. Finally, back-splicing sites within 15 circRNAs and the difference in the 15 DEcircRNAs' expression between uninoculated and A. apis-inoculated larval guts were confirmed based on molecular methods. These findings not only enrich our understanding of bee host-fungal pathogen interactions but also lay a foundation for illuminating the mechanism underlying the DEcircRNA-mediated immune defense of A. c. cerana larvae against A. apis invasion. KEY POINTS: • The expression pattern of circRNAs was altered in the A. cerana worker larval guts following A. apis infection. • Back-splicing sites within 15 A. cerana circRNAs were verified using molecular approaches. DEcircRNAs potentially modulated immune responses and antioxidant enzymes in A. apis-challenged host guts.

摘要

非编码RNA(ncRNA)在植物和动物的免疫反应、生长及发育调控中发挥着至关重要的作用。在此,我们对中华蜜蜂工蜂幼虫肠道中的环状RNA(circRNA)进行了鉴定、特征分析及分子验证,随后深入研究了幼虫circRNA在蜜蜂球囊菌感染期间的表达模式,并探索了差异表达circRNA(DEcircRNA)在宿主免疫反应中的潜在调控作用。共鉴定出中华蜜蜂幼虫肠道中的3178个circRNA,其长度分布在15至96,007 nt之间。此外,在蜜蜂球囊菌感染后的4日龄、5日龄和6日龄幼虫肠道中分别鉴定出155个、95个和86个DEcircRNA。这些DEcircRNA预计靶向与12个、20个和17个基因本体(GO)术语以及144个、114个和61个京都基因与基因组百科全书(KEGG)通路相关的29个、25个和18个亲本基因,其中包括5个细胞免疫通路和4个体液免疫通路。在DEcircRNA、DEmiRNA和DEmRNA之间检测到形成了复杂的竞争性内源RNA(ceRNA)调控网络。目标DEmRNA参与了36个、47个和47个GO术语以及331个、332个和331个通路,其中包括6个细胞免疫通路和6个体液免疫通路。此外,相对于3种抗氧化酶,19个DEcircRNA、5个DEmiRNA和3个mRNA被纳入子网络。最后,基于分子方法证实了15个circRNA中的反向剪接位点以及未接种和接种蜜蜂球囊菌的幼虫肠道中15个DEcircRNA表达的差异。这些发现不仅丰富了我们对蜜蜂宿主-真菌病原体相互作用的理解,也为阐明中华蜜蜂幼虫DEcircRNA介导的针对蜜蜂球囊菌入侵的免疫防御机制奠定了基础。要点:• 蜜蜂球囊菌感染后,中华蜜蜂工蜂幼虫肠道中circRNA的表达模式发生改变。• 使用分子方法验证了15个中华蜜蜂circRNA中的反向剪接位点。DEcircRNA可能在受蜜蜂球囊菌挑战的宿主肠道中调节免疫反应和抗氧化酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e28d/10933204/9ef97c19ca62/253_2024_13102_Fig1_HTML.jpg

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