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Identification and characterization of miRNAs and targets in flax ( Linum usitatissimum ) under saline, alkaline, and saline-alkaline stresses

机译:盐,碱和盐碱胁迫下亚麻(Linum usitatissimum)中miRNA和靶标的鉴定与表征

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Background MicroRNAs (miRNAs) play a critical role in responses to biotic and abiotic stress and have been characterized in a large number of plant species. Although flax ( Linum usitatissimum L.) is one of the most important fiber and oil crops worldwide, no reports have been published describing flax miRNAs (Lus-miRNAs) induced in response to saline, alkaline, and saline-alkaline stresses. Results In this work, combined small RNA and degradome deep sequencing was used to analyze flax libraries constructed after alkaline-salt stress (AS2), neutral salt stress (NSS), alkaline stress (AS), and the non-stressed control (CK). From the CK, AS, AS2, and NSS libraries, a total of 118, 119, 122, and 120 known Lus-miRNAs and 233, 213, 211, and 212 novel Lus-miRNAs were isolated, respectively. After assessment of differential expression profiles, 17 known Lus-miRNAs and 36 novel Lus-miRNAs were selected and used to predict putative target genes. Gene ontology term enrichment analysis revealed target genes that were involved in responses to stimuli, including signaling and catalytic activity. Eight Lus-miRNAs were selected for analysis using qRT-PCR to confirm the accuracy and reliability of the miRNA-seq results. The qRT-PCR results showed that changes in stress-induced expression profiles of these miRNAs mirrored expression trends observed using miRNA-seq. Degradome sequencing and transcriptome profiling showed that expression of 29 miRNA-target pairs displayed inverse expression patterns under saline, alkaline, and saline-alkaline stresses. From the target prediction analysis, the miR398a-targeted gene codes for a copper/zinc superoxide dismutase, and the miR530 has been shown to explicitly target WRKY family transcription factors, which suggesting that these two micRNAs and their targets may significant involve in the saline, alkaline, and saline-alkaline stress response in flax. Conclusions Identification and characterization of flax miRNAs, their target genes, functional annotations, and gene expression patterns are reported in this work. These findings will enhance our understanding of flax miRNA regulatory mechanisms under saline, alkaline, and saline-alkaline stresses and provide a foundation for future elucidation of the specific functions of these miRNAs.
机译:背景技术MicroRNA(miRNA)在对生物和非生物胁迫的响应中起关键作用,并且已在许多植物物种中得到了表征。尽管亚麻(亚麻(Linum usitatissimum L.)是世界上最重要的纤维和油料作物之一,但尚未有报道描述响应于盐,碱和盐碱胁迫而诱导产生的亚麻miRNA(Lus-miRNA)的报道。结果在这项工作中,结合了小分子RNA和降解组的深度测序,用于分析碱盐胁迫(AS2),中性盐胁迫(NSS),碱胁迫(AS)和非胁迫对照(CK)后构建的亚麻文库。从CK,AS,AS2和NSS库中,分别分离出总共118、119、122和120个已知的Lus-miRNA和233、213、211和212个新颖的Lus-miRNA。在评估差异表达谱后,选择了17种已知的Lus-miRNA和36种新颖的Lus-miRNA,并用于预测推定的靶基因。基因本体术语富集分析揭示了目标基因参与了对刺激的反应,包括信号传导和催化活性。使用qRT-PCR选择了八个Lus-miRNA进行分析,以确认miRNA-seq结果的准确性和可靠性。 qRT-PCR结果表明,这些miRNA的应激诱导表达谱变化反映了使用miRNA-seq观察到的表达趋势。降解组测序和转录组谱分析表明,29个miRNA-靶标对的表达在盐,碱和盐碱胁迫下显示出相反的表达模式。从目标预测分析中,miR398a靶向的基因编码铜/锌超氧化物歧化酶,并且miR530已显示出明确靶向WRKY家族转录因子,这表明这两个micRNA及其靶标可能与盐,亚麻中的碱性和盐碱胁迫反应。结论这项工作报道了亚麻miRNA,其靶标基因,功能注释和基因表达模式的鉴定和表征。这些发现将增进我们对盐,碱和盐碱胁迫下亚麻miRNA调控机制的了解,并为将来阐明这些miRNA的特定功能提供基础。

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