Zhang Qi-Lin, Jiang Yu-Hang, Dong Zhi-Xiang, Li Hong-Wei, Lin Lian-Bing
Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, 650500, China; Engineering Research Center for Replacement Technology of Feed Antibiotics of Yunnan College, Kunming, 650500, China.
Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, 650500, China.
J Hazard Mater. 2021 Jan 5;401:123409. doi: 10.1016/j.jhazmat.2020.123409. Epub 2020 Jul 7.
Larval aquatic fireflies in fresh water are adversely affected by water pollutants such as benzo(a)pyrene (BaP). However, their response to BaP stress at the microRNA (miRNA)-regulatory level remains unknown. Here, transcriptomes containing 31,872 genes and six miRNA transcriptional profiles were obtained for Aquatica wuhana larvae, and comparative analysis was performed between larvae exposed to BaP (0.01 mg/L) and unexposed controls. Fifteen of 114 miRNAs identified via bioinformatics were detected as differentially expressed (DEMs) upon BaP exposure. Analysis results of predicted target genes of DEM suggests that BaP exposure primarily triggered transcriptional changes of miRNA associated with five major regulatory categories: 1) osmotic balance, 2) energy metabolic efficiency, 3) development, 4) xenobiotic metabolism (oxidative stress), and 5) innate immune response. Based on six innate immune- and xenobiotic metabolism-related pathways enriched by the predicted DEM targets, 11 key BaP-responsive DEMs were further screened to investigate dynamic changes of expression in response to BaP stress at five time points, and also to validate the miRNA sequencing data using quantitative real-time PCR. This study provides valuable information for the protection of firefly resources and supplements the understanding of miRNA regulatory mechanisms in response to water deterioration.
淡水环境中的水生萤火虫幼虫会受到苯并(a)芘(BaP)等水污染物的不利影响。然而,它们在微小RNA(miRNA)调控水平上对BaP胁迫的反应仍不清楚。在此,我们获得了武纳水萤幼虫包含31,872个基因的转录组和六个miRNA转录谱,并对暴露于BaP(0.01 mg/L)的幼虫和未暴露的对照组进行了比较分析。通过生物信息学鉴定的114个miRNA中有15个在BaP暴露后被检测为差异表达(DEM)。对DEM预测靶基因的分析结果表明,BaP暴露主要引发了与五个主要调控类别相关的miRNA转录变化:1)渗透平衡,2)能量代谢效率,3)发育,4)异生物质代谢(氧化应激),以及5)先天免疫反应。基于预测的DEM靶标富集的六个与先天免疫和异生物质代谢相关的途径,进一步筛选出11个关键的BaP反应性DEM,以研究其在五个时间点对BaP胁迫的表达动态变化,并使用定量实时PCR验证miRNA测序数据。本研究为萤火虫资源保护提供了有价值的信息,并补充了对miRNA响应水质恶化调控机制的理解。