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首页> 外文期刊>Frontiers in Plant Science >Identification, Expression Analysis, and Target Prediction of Flax Genotroph MicroRNAs Under Normal and Nutrient Stress Conditions
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Identification, Expression Analysis, and Target Prediction of Flax Genotroph MicroRNAs Under Normal and Nutrient Stress Conditions

机译:正常和营养胁迫条件下亚麻Genotroph MicroRNA的鉴定,表达分析和靶标预测

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摘要

Cultivated flax ( Linum usitatissimum L.) is an important plant valuable for industry. Some flax lines can undergo heritable phenotypic and genotypic changes (LIS-1 insertion being the most common) in response to nutrient stress and are called plastic lines. Offspring of plastic lines, which stably inherit the changes, are called genotrophs. MicroRNAs (miRNAs) are involved in a crucial regulatory mechanism of gene expression. They have previously been assumed to take part in nutrient stress response and can, therefore, participate in genotroph formation. In the present study, we performed high-throughput sequencing of small RNAs (sRNAs) extracted from flax plants grown under normal, phosphate deficient and nutrient excess conditions to identify miRNAs and evaluate their expression. Our analysis revealed expression of 96 conserved miRNAs from 21 families in flax. Moreover, 475 novel potential miRNAs were identified for the first time, and their targets were predicted. However, none of the identified miRNAs were transcribed from LIS-1. Expression of seven miRNAs (miR168, miR169, miR395, miR398, miR399, miR408, and lus-miR-N1) with up- or down-regulation under nutrient stress (on the basis of high-throughput sequencing data) was evaluated on extended sampling using qPCR. Reference gene search identified ETIF3H and ETIF3E genes as most suitable for this purpose. Down-regulation of novel potential lus-miR-N1 and up-regulation of conserved miR399 were revealed under the phosphate deficient conditions. In addition, the negative correlation of expression of lus-miR-N1 and its predicted target, ubiquitin-activating enzyme E1 gene, as well as, miR399 and its predicted target, ubiquitin-conjugating enzyme E2 gene, was observed. Thus, in our study, miRNAs expressed in flax plastic lines and genotrophs were identified and their expression and expression of their targets was evaluated using high-throughput sequencing and qPCR for the first time. These data provide new insights into nutrient stress response regulation in plastic flax cultivars.
机译:栽培亚麻(Linum usitatissimum L.)是一种对工业有价值的重要植物。一些亚麻品系可以响应营养胁迫而经历可遗传的表型和基因型变化(最常见的是LIS-1插入),被称为可塑品系。稳定继承变化的塑料线的后代称为基因营养型。 MicroRNA(miRNA)参与基因表达的关键调控机制。以前假定它们参与营养胁迫反应,因此可以参与基因型的形成。在本研究中,我们对在正常,磷酸盐缺乏和营养过量的条件下生长的亚麻植物中提取的小RNA(sRNA)进行了高通量测序,以鉴定miRNA并评估其表达。我们的分析揭示了亚麻中21个家族的96个保守miRNA的表达。此外,首次鉴定了475种潜在的新型miRNA,并预测了它们的靶标。但是,没有从LIS-1转录出任何已鉴定的miRNA。在延长的采样期间,评估了在营养胁迫下上调或下调的七个miRNA(miR168,miR169,miR395,miR398,miR399,miR408和lus-miR-N1)的表达(基于高通量测序数据)使用qPCR。参考基因搜索确定了最适合此目的的ETIF3H和ETIF3E基因。在磷酸盐缺乏的条件下,发现了新的潜在的lus-miR-N1的下调和保守的miR399的上调。另外,观察到lus-miR-N1与其预测的靶标,泛素激活酶E1基因以及miR399及其预测的靶标,泛素结合酶E2基因的表达呈负相关。因此,在我们的研究中,首次鉴定了在亚麻塑料系和基因型中表达的miRNA,并首次使用高通量测序和qPCR评估了它们的表达和靶标表达。这些数据提供了对塑料亚麻品种养分胁迫响应调控的新见解。

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