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虹鳟(Oncorhynchus mykiss)肝脏中circRNA-miRNA-mRNA ceRNA网络对热应激反应的综合分析

Integrated analysis of the responses of a circRNA-miRNA-mRNA ceRNA network to heat stress in rainbow trout (Oncorhynchus mykiss) liver.

作者信息

Quan Jinqiang, Kang Yujun, Luo Zhicheng, Zhao Guiyan, Li Lanlan, Liu Zhe

机构信息

College of Animal Science & Technology, Gansu Agricultural University, Lanzhou, 730070, P.R. China.

出版信息

BMC Genomics. 2021 Jan 11;22(1):48. doi: 10.1186/s12864-020-07335-x.

Abstract

BACKGROUND

With the intensification of global warming, rainbow trout (Oncorhynchus mykiss) suffer from varying degrees of thermal stimulation, leads to mass mortality, which severely restrict the development of aquaculture. Understanding the molecular regulatory mechanisms of rainbow trout under heat stress is useful to develop approaches to relieve symptoms.

RESULTS

Changes in nonspecific immune parameters revealed that a strong stress response was caused in rainbow trout at 24 °C, so we performed multiple transcriptomic analyses of rainbow trout liver under heat stress (HS, 24 °C) and control conditions (CG, 18 °C). A total of 324 DEcircRNAs, 105 DEmiRNAs, and 1885 DEmRNAs were identified. A ceRNA regulatory network was constructed and a total of 301 circRNA-miRNA and 51 miRNA-mRNA negative correlation pairs were screened, and three regulatory correlation pairs were predicted: novel_circ_003889 - novel-m0674-3p - hsp90ab1, novel_circ_002325 - miR-18-y - HSPA13 and novel_circ_002446 - novel-m0556-3p - hsp70. Some target genes involved in metabolic processes, biological regulation or response to stimulus were highly induced at high temperatures. Several important pathways involved in heat stress were characterized, such as protein processing in the ER, the estrogen signaling pathway, and the HIF-1 signaling pathway.

CONCLUSIONS

These results extend our understanding of the molecular mechanisms of the heat stress response and provide novel insight for the development of strategies that relieve heat stress.

摘要

背景

随着全球变暖加剧,虹鳟(Oncorhynchus mykiss)遭受不同程度的热刺激,导致大量死亡,这严重制约了水产养殖业的发展。了解虹鳟在热应激下的分子调控机制有助于开发缓解症状的方法。

结果

非特异性免疫参数的变化表明,24°C时虹鳟产生了强烈的应激反应,因此我们对热应激(HS,24°C)和对照条件(CG,18°C)下的虹鳟肝脏进行了多次转录组分析。共鉴定出324个差异表达环状RNA(DEcircRNAs)、105个差异表达微小RNA(DEmiRNAs)和1885个差异表达信使RNA(DEmRNAs)。构建了一个竞争性内源RNA(ceRNA)调控网络,共筛选出301个环状RNA-微小RNA和51个微小RNA-信使RNA负相关对,并预测了三个调控相关对:novel_circ_003889 - novel-m0674-3p - hsp90ab1、novel_circ_002325 - miR-18-y - HSPA13和novel_circ_002446 - novel-m0556-3p - hsp70。一些参与代谢过程、生物调节或对刺激反应的靶基因在高温下被高度诱导。鉴定了一些与热应激相关的重要途径,如内质网中的蛋白质加工、雌激素信号通路和缺氧诱导因子-1(HIF-1)信号通路。

结论

这些结果扩展了我们对热应激反应分子机制的理解,并为开发缓解热应激的策略提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4043/7802223/8f169af65a54/12864_2020_7335_Fig1_HTML.jpg

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