Iqrar Sadia, Ashrafi Kudsiya, Khan Shazia, Saifi Monica, Nasrullah Nazima, Abdin Malik Zainul
Centre for Transgenic Plant Development, Department of Biotechnology, School of Chemical and Life Science, Jamia Hamdard, New Delhi 110062, India.
ACS Omega. 2022 Apr 11;7(15):13228-13242. doi: 10.1021/acsomega.2c00676. eCollection 2022 Apr 19.
MicroRNAs (miRNAs) play an important role in the regulation of gene expression. They play a regulatory role in various nutrient assimilatory pathways of plants; however, their role in the regulation of sulfur uptake and assimilatory pathways in mustard cultivars under high/low sulfur conditions is not elucidated. Sulfur is essential for plant growth and development, and its deficiency can cause a decline in oil seed content and thus lower the economic yield in . In this study, different miRNAs involved in the regulation of sulfur uptake and assimilation pathways in were identified using a psRNA target analyzer and miRanda database tools. The predicted miRNAs that belong to 10 highly conserved families were validated using stem-loop RT-PCR. The cultivars Pusa Jaikisan, Pusa Bold, and Varuna were kept in sulfur-excessive (high) and -deficient (insufficient) conditions, and expression studies of miRNAs and their target mRNAs were carried out using qRT-PCR. The correlation between the expression pattern of miRNAs and their target genes showed their potential role in sulfur uptake and assimilation. Analysis with 5' RACE revealed the authentic target of miRNAs. The influence of S treatments on metabolites and sulfur content was also studied using GC-MS and a CHNS analyzer. Our study showed the potential role of miRNAs in the regulation of sulfur uptake and assimilation and put forward the implications of these molecules to enhance the sulfur content of
微小RNA(miRNA)在基因表达调控中发挥着重要作用。它们在植物的各种养分同化途径中起调节作用;然而,它们在高/低硫条件下对芥菜品种硫吸收和同化途径的调控作用尚未阐明。硫对植物生长发育至关重要,其缺乏会导致油籽含量下降,从而降低油菜的经济产量。在本研究中,使用psRNA靶标分析器和miRanda数据库工具鉴定了参与油菜硫吸收和同化途径调控的不同miRNA。使用茎环RT-PCR验证了属于10个高度保守家族的预测miRNA。将油菜品种Pusa Jaikisan、Pusa Bold和Varuna置于硫过量(高)和硫缺乏(不足)条件下,使用qRT-PCR进行miRNA及其靶标mRNA的表达研究。miRNA表达模式与其靶基因之间的相关性表明了它们在硫吸收和同化中的潜在作用。5' RACE分析揭示了miRNA的真实靶标。还使用GC-MS和CHNS分析仪研究了硫处理对代谢物和硫含量的影响。我们的研究表明了miRNA在硫吸收和同化调控中的潜在作用,并提出了这些分子对提高油菜硫含量的意义