Department of Plant Pathology, Tamil Nadu Agricultural University, Coimbatore, Tamil Nadu 641 003, India.
Department of Plant Pathology, Tamil Nadu Agricultural University, Coimbatore, Tamil Nadu 641 003, India.
J Virol Methods. 2024 Jun;327:114924. doi: 10.1016/j.jviromet.2024.114924. Epub 2024 Apr 2.
Tomato, an extensively cultivated vegetable crop produces miRNAs in response to infection with Groundnut bud necrosis orthotospovirus, a viral pathogen causing significant economic losses. High-throughput miRNA sequencing was performed on tomato leaves inoculated with GBNV and mock-inoculated leaves as controls. Analysis revealed 73 known miRNAs belonging to 24 miRNA families, with variable expression levels. Interestingly, 39 miRNAs were upregulated, and 34 were downregulated in response to GBNV infection. Stem-loop quantitative reverse transcription PCR validated the differential expression of selected miRNAs. Additionally, 30 miRNA encoded proteins were identified to be involved in disease resistance and susceptibility. The miRNA-target interactions were found to play significant roles in cellular and metabolic activities, as well as modulating signaling pathways during the plant-virus interaction. The findings shed light on the intricate regulatory network of miRNAs in tomato response to viral infection and may contribute to developing strategies for improving crop protection against viral diseases.
番茄是一种广泛种植的蔬菜作物,能够产生 miRNA 以响应花生芽坏死 orthotospovirus(一种导致重大经济损失的病毒病原体)的感染。对用 GBNV 接种和模拟接种的番茄叶片进行了高通量 miRNA 测序。分析显示,有 73 种已知的 miRNA 属于 24 个 miRNA 家族,其表达水平存在差异。有趣的是,有 39 种 miRNA 上调,34 种 miRNA 下调,对 GBNV 感染作出响应。茎环定量反转录 PCR 验证了所选 miRNA 的差异表达。此外,还鉴定出 30 种 miRNA 编码蛋白参与了抗病性和感病性。发现 miRNA-靶标相互作用在植物-病毒相互作用过程中对细胞和代谢活动以及信号通路的调节起着重要作用。这些发现揭示了番茄对病毒感染响应中 miRNA 的复杂调控网络,并可能有助于制定提高作物对病毒病保护的策略。