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首页> 外文期刊>Planta: An International Journal of Plant Biology >Identification of aluminum-responsive microRNAs in Medicago truncatula by genome-wide high-throughput sequencing
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Identification of aluminum-responsive microRNAs in Medicago truncatula by genome-wide high-throughput sequencing

机译:通过全基因组高通量测序鉴定梅花苜蓿中铝响应性microRNA

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MicroRNAs (miRNAs) play important roles in response of plants to biotic and abiotic stresses. Aluminum (Al) toxicity is a major factor limiting plant growth in acidic soils. However, there has been limited report on the involvement of miRNAs in response of plants to toxic Al ~(3+). To identify Al ~(3+)-responsive miRNAs at whole-genome level, high-throughput sequencing technology was used to sequence libraries constructed from root apices of the model legume plant Medicago truncatula treated with and without Al ~(3+). High-throughput sequencing of the control and two Al ~(3+)-treated libraries led to generation of 17.1, 14.1 and 17.4 M primary reads, respectively. We identified 326 known miRNAs and 21 new miRNAs. Among the miRNAs, expression of 23 miRNAs was responsive to Al ~(3+), and the majority of Al ~(3+)-responsive mRNAs was down-regulated. We further classified the Al 3+-responsive miRNAs into three groups based on their expression patterns: rapid-responsive, late-responsive and sustained-responsive miRNAs. The majority of Al ~(3+)-responsive miRNAs belonged to the 'rapid-responsive' category, i. e. they were responsive to short-term, but not long-term Al ~(3+) treatment. The Al ~(3+)-responsive miRNAs were also verified by quantitative real-time PCR. The potential targets of the 21 new miRNAs were predicted to be involved in diverse cellular processes in plants, and their potential roles in Al ~(3+)-induced inhibition of root growth were discussed. These findings provide valuable information for functional characterization of miRNAs in Al ~(3+) toxicity and tolerance.
机译:MicroRNA(miRNA)在植物对生物和非生物胁迫的响应中起重要作用。铝(Al)毒性是限制植物在酸性土壤中生长的主要因素。然而,关于miRNA参与植物对有毒A1〜(3+)的反应的报道很少。为了在全基因组水平上鉴定对Al〜(3+)有反应的miRNA,使用高通量测序技术对由模型豆科植物Medi藜苜蓿经和不使用Al〜(3+)处理的根尖构建的文库进行测序。对照和两个经Al〜(3+)处理的文库的高通量测序分别导致产生17.1、14.1和17.4 M的一级读取。我们确定了326个已知的miRNA和21个新的miRNA。在这些miRNA中,有23个miRNA的表达对A1〜(3+)有反应,而大多数对A1〜(3+)有反应的mRNA均被下调。我们根据其表达方式将Al 3+响应性miRNA进一步分为三类:快速响应,晚期响应和持续响应miRNA。大多数对A1〜(3+)有反应的miRNA属于“快速反应”类别,即。 e。他们对短期(而非长期)Al〜(3+)治疗有反应。还通过定量实时PCR验证了A1〜(3+)应答性miRNA。预测21种新miRNA的潜在靶标将参与植物的各种细胞过程,并讨论了它们在Al〜(3+)诱导的根生长抑制中的潜在作用。这些发现为miRNA在Al〜(3+)的毒性和耐受性中的功能表征提供了有价值的信息。

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