CircArid4b: A novel circular RNA regulating antibacterial response during hypoxic stress via apoptosis in yellow catfish (Pelteobagrus fulvidraco)

IF 3.9 3区 环境科学与生态学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Linxin Zhou , Jiayi Li , Xinxin Sun , Yingying Xin , Shaowu Yin , Xianhui Ning
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Abstract

The intricate interaction among host, pathogen, and environment significantly influences aquatic health, yet the influence of hypoxic stress combined with bacterial infection on host response is understudied. Circular RNAs with stable closed-loop structures have emerged as important regulators in immunity, yet remain ill-defined in fish. In this study, we systematically explored the circRNA response in yellow catfish subjected to combined hypoxia-bacterial infection (HB) stress. Following HB stress, H&E and TUNEL staining identified heightened hepatocyte apoptosis, intracellular vacuolation, and inflammatory tissue damage. RT-qPCR elucidated that differentially expressed genes stimulated by HB synergistically enhanced apoptosis and inflammatory responses. Importantly, we systematically evaluated differentially expressed circRNAs (DEcirs) in yellow catfish under hypoxia with and without Aeromonas veronii infection and identified a novel HB-specific DEcir, designated as circArid4b, whose parental gene Arid4b is highly associated with apoptosis. Experiments confirmed the circular structure of circArid4b and revealed that under HB stimulation, specific knockdown of circArid4b inhibited the expression of Arid4b, while concurrent alterations in multiple apoptosis- and inflammation-related genes synergistically indicated the promotion of apoptotic and inflammatory pathways. Notably, the downregulation of circArid4b expression significantly reduced the susceptibility to bacterial infection in yellow catfish during hypoxia. These results suggest that HB-induced suppression of circArid4b promotes cell apoptosis and inflammation by inhibiting its parental gene and thereby facilitating resistance to bacterial infection during hypoxia. Our study enriches the understanding of fish circRNA mechanisms and offers novel preventive and control strategies for bacterial infections in fish under hypoxic environments.

Abstract Image

CircArid4b:一种新的环状RNA,通过黄颡鱼(Pelteobagrus fulvidraco)的凋亡调节缺氧应激时的抗菌反应。
宿主、病原体和环境之间复杂的相互作用显著影响水生生物的健康,但缺氧胁迫联合细菌感染对宿主反应的影响尚不清楚。具有稳定闭环结构的环状rna已成为免疫的重要调节因子,但在鱼类中仍然定义不清。在这项研究中,我们系统地探索了黄鲶鱼在缺氧-细菌感染(HB)联合应激下的circRNA反应。HB应激后,H&E和TUNEL染色发现肝细胞凋亡、细胞内空泡化和炎症组织损伤增加。RT-qPCR证实HB刺激的差异表达基因协同增强细胞凋亡和炎症反应。重要的是,我们系统地评估了缺氧和不感染维罗氏气单胞菌的黄鲶鱼的差异表达circRNAs (DEcirs),并鉴定了一种新的hb特异性DEcir,命名为circArid4b,其亲本基因Arid4b与细胞凋亡高度相关。实验证实了circArid4b的环状结构,并发现在HB刺激下,特异性敲低circArid4b可抑制Arid4b的表达,而多个凋亡和炎症相关基因的同步改变协同提示凋亡和炎症通路的促进。值得注意的是,在缺氧条件下,circArid4b表达下调可显著降低黄颡鱼对细菌感染的易感性。这些结果表明,hb诱导的circArid4b抑制通过抑制其亲本基因促进细胞凋亡和炎症,从而促进缺氧时对细菌感染的抵抗。我们的研究丰富了对鱼类环状rna机制的理解,并为缺氧环境下鱼类细菌感染的预防和控制提供了新的策略。
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来源期刊
CiteScore
7.50
自引率
5.10%
发文量
206
审稿时长
30 days
期刊介绍: Part C: Toxicology and Pharmacology. This journal is concerned with chemical and drug action at different levels of organization, biotransformation of xenobiotics, mechanisms of toxicity, including reactive oxygen species and carcinogenesis, endocrine disruptors, natural products chemistry, and signal transduction with a molecular approach to these fields.
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