Baqi Abdul, Khan Jadoon, Sadiq Asma, Khan Yousaf, Ali Shahid, Mohani Syed Nadeem Ul Hassan, Khan Naqeebullah, Shah Tawaf Ali, Almaary Khalid S, Younous Youssouf Ali, Bourhia Mohammed
Department of Chemistry, University of Balochistan, Quetta, Pakistan.
Department of Allied Health Sciences, Sarhad University Islamabad Campus, Islamabad, Pakistan.
Plant Signal Behav. 2025 Dec;20(1):2452334. doi: 10.1080/15592324.2025.2452334. Epub 2025 Jan 28.
Various metabolic and cell signaling processes impact the functions of sugarcane plant cells. MicroRNAs (miRNAs) play critical regulatory roles in enhancing yield and providing protection against various stressors. This study seeks to identify and partially characterize several novel miRNAs in sugarcane using tools, while also offering a preliminary assessment of their functions. This was accomplished by predicting novel conserved miRNAs in sugarcane plants using a variety of genomics-based techniques like BLASTn, MFOLD, psRNA Target, sequence logo, Weblogo, primer-3, etc. and annotated using miRBase and NCBI. For validation, RT-PCR method was used along with agarose gel. After the preparation of fourteen randomly chosen primers, they were validated by RT-PCR. Accordingly, they contain fifty specific targeted proteins with substantial targets in the structural, transcriptional protein, etc. Furthermore, the sof-miR5025a directs the heat repeat protein while the voltage-dependent anion is governed by sof-miR8005a. Similarly, the sof-miR7768b and sof-miR6249b monitor the pathogenesis-related protein and zinc finger, CH type protein, which assist as transcription factors. Thus, the novel sugarcane miRNAs target a wide range of important genes help regulate the environment for sugarcane to generate a higher-quality crop.
各种代谢和细胞信号传导过程会影响甘蔗植物细胞的功能。微小RNA(miRNA)在提高产量和抵御各种应激源方面发挥着关键的调节作用。本研究旨在利用相关工具鉴定并部分表征甘蔗中的几种新型miRNA,同时对其功能进行初步评估。这是通过使用多种基于基因组学的技术(如BLASTn、MFOLD、psRNA Target、序列标识、Weblogo、primer-3等)预测甘蔗植物中的新型保守miRNA,并使用miRBase和NCBI进行注释来实现的。为了进行验证,使用了RT-PCR方法和琼脂糖凝胶。在制备了14条随机选择的引物后,通过RT-PCR对它们进行了验证。相应地,它们包含50种特定的靶向蛋白质,在结构、转录蛋白等方面有大量靶点。此外,sof-miR5025a指导热重复蛋白,而电压依赖性阴离子则由sof-miR8005a控制。同样,sof-miR7768b和sof-miR6249b监测病程相关蛋白和锌指CH型蛋白,它们作为转录因子发挥作用。因此,新型甘蔗miRNA靶向多种重要基因,有助于调节甘蔗的生长环境,从而培育出更高质量的作物。