Department of Botany, Bioinformatics and Climate Change Impacts Management, School of Sciences, Gujarat University, Ahmedabad, Gujarat, 380009, India.
Department of Life Sciences, School of Sciences, Gujarat University, Ahmedabad, Gujarat, 380009, India.
Biochem Genet. 2024 Aug;62(4):2766-2795. doi: 10.1007/s10528-023-10575-7. Epub 2023 Nov 28.
MicroRNAs could be promising biomarkers for various diseases, and small RNA drugs have already been FDA approved for clinical use. This area of research is rapidly expanding and has significant potential for the future. Fennel (Anethum foeniculum) is a highly esteemed spice plant with economic and medicinal benefits, making it an invaluable asset in the pharmaceutical industry. To characterize the fennel miRNAs and their Arabidopsis thaliana and Homo sapience targets with functional enrichment analysis and human disease association. A homology-based computational approach characterized the MiRnome of the Anethum foeniculum genome and assessed its impact on Arabidopsis thaliana and Homo sapience transcriptomes. In addition, functional enrichment analysis was evaluated for both species' targets. Moreover, PPI network analysis, hub gene identification, and MD simulation analysis of the top hub node with fennel miRNA were incorporated. We have identified 100 miRNAs of fennel and their target genes, which include 2536 genes in Homo sapiens and 1314 genes in Arabidopsis thaliana. Functional enrichment analysis reveals 56 Arabidopsis thaliana targets of fennel miRNAs showed involvement in metabolic pathways. Highly enriched human KEGG pathways were associated with several diseases, especially cancer. The protein-protein interaction network of human targets determined the top ten nodes; from them, seven hub nodes, namely MAPK1, PIK3R1, STAT3, EGFR, KRAS, CDC42, and SMAD4, have shown their involvement in the pancreatic cancer pathway. Based on the Blast algorithm, 21 fennel miRNAs are homologs to 16 human miRNAs were predicted; from them, the CSPP1 target was a common target for afo-miR11117a-3p and has-miR-6880-5p homologs miRNAs. Our results are the first to report the 100 fennel miRNAs, and predictions for their endogenous and human target genes provide a basis for further understanding of Anethum foeniculum miRNAs and the biological processes and diseases with which they are associated.
miRNAs 可以作为各种疾病有前途的生物标志物,并且小 RNA 药物已被 FDA 批准用于临床应用。该研究领域正在迅速扩展,具有巨大的发展潜力。茴香(Anethum foeniculum)是一种备受推崇的香料植物,具有经济和药用价值,是制药行业的宝贵资产。本研究旨在对茴香的 miRNA 及其拟南芥和人类的靶基因进行功能富集分析和与人类疾病的关联分析。基于同源性的计算方法对茴香基因组的 miRNAome 进行了特征描述,并评估了其对拟南芥和人类转录组的影响。此外,还对两个物种的靶基因进行了功能富集分析。此外,还进行了 PPI 网络分析、鉴定枢纽基因和对与茴香 miRNA 相关的顶级枢纽节点进行 MD 模拟分析。本研究共鉴定出 100 个茴香 miRNA 及其靶基因,其中包括人类的 2536 个基因和拟南芥的 1314 个基因。功能富集分析表明,茴香 miRNA 的 56 个拟南芥靶基因参与了代谢途径。与多种疾病(尤其是癌症)相关的高度富集的人类 KEGG 途径。通过对人类靶基因的蛋白质-蛋白质相互作用网络分析,确定了前 10 个节点;其中,MAPK1、PIK3R1、STAT3、EGFR、KRAS、CDC42 和 SMAD4 等 7 个枢纽基因参与了胰腺癌途径。基于 Blast 算法,预测出 21 个茴香 miRNA 与 16 个人类 miRNA 同源,其中 CSPP1 靶基因是 afo-miR11117a-3p 和 has-miR-6880-5p 同源 miRNA 的共同靶基因。本研究首次报道了 100 个茴香 miRNA,并对其内源性和人类靶基因进行了预测,为进一步了解 Anethum foeniculum miRNA 及其相关的生物学过程和疾病提供了依据。