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In silico identification and validation of miRNA and their DIR specific targets in

机译:在硅鉴定和验证miRNA及其目录特定目标

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摘要

Several biotic (bacterial and viral pathogenesis) and abiotic stress factors like salt, drought, cold, and extreme temperatures significantly reduce crop productivity and grain quality throughout the world. MicroRNAs (miRNAs) are small (~22 nucleotides) non-coding endogenous RNA molecules which negatively regulate gene expression at the post-transcriptional level either by degrading the target protein-coding mRNA genes or suppressing translation in plants. Dirigent (DIR) gene protein plays a crucial role as they are involved to dictate the stereochemistry of a compound synthesized by other enzymes as well as in lignifications against biotic and abiotic stress. In plants, several miRNAs, as well as their targets, are known to regulate stress response but systematic identification of the same is limited. The present work has been designed for in silico identification of miRNAs against a total of sixty-one DIR genes in Oryza sativa Indica followed by target prediction of identified miRNAs through the computational approach and thereafter validation of potential miRNAs in rice genotypes. We systematically identified 3 miRNA and their respective DIR specific target gene in Oryza sativa Indica. The expression of these three miRNAs and their respective DIR specific targets were validated in rice seedlings subjected to five different abiotic stress conditions (heavy metal, high temperature, low temperature, salinity and drought) by quantitative Real-Time PCR (qRT-PCR). Expression analysis indicated that miRNA under stress conditions regulates the gene expression of the DIR gene in rice. To the best of our knowledge this is this is the first report in any organism showing the expression of ath-miRf10317-akr, and osamiRf10761-akr miRNAs in response to various abiotic stresses.
机译:几种生物(细菌和病毒发病机制)和盐,干旱,冷和极端温度等非生物胁迫因素显着降低了全世界的作物生产力和粮食品质。 MicroRNAs(miRNA)是小(〜22个核苷酸)非编码内源性RNA分子,其通过使靶蛋白编码mRNA基因降解或抑制植物中的翻译来负化在转录后水平的基因表达。 Dirigent(Dir)基因蛋白在涉及由其他酶合成的化合物的立体化学以及对生物和非生物胁迫的血液中所涉及的表现出来至关重要的作用。在植物中,已知几种miRNA以及它们的靶标来调节应力响应,但是有限的系统识别。本作本作的作品是针对麦芽醛的硅鉴定,Chroup in Olyza Sativa indica中总共六十一体基因,然后通过计算方法进行鉴定的miRNA的靶预测,然后在水稻基因型中验证潜在的miRNA。我们系统地鉴定了oryza苜蓿籼稻中的3 miRNA及其各自的病症特异性靶基因。通过定量实时PCR(QRT-PCR)在水稻幼苗中验证了这三种miRNA的表达及其各自的病症特异性靶标在进行五种不同的非生物胁迫条件(重金属,高温,低温,盐度和干旱)中。表达分析表明,压力条件下的miRNA调节水稻中的riv基因的基因表达。据我们所知,这是任何有机体中的第一个报告,显示ATH-MIRF10317-AKR和OSAMIRF10761-AKR MIRNA响应各种非生物应激。

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