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首页> 外文期刊>Journal of Plant Physiology >Identification of microRNAs and their targets responding to low-potassium stress in two barley genotypes differing in low-K tolerance
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Identification of microRNAs and their targets responding to low-potassium stress in two barley genotypes differing in low-K tolerance

机译:在低k耐受性的两种大麦基因型中对低钾胁迫的鉴定及其目标

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摘要

MicroRNAs CmiRNAs) have diverse and crucial roles in plant growth and development, including in the response to abiotic stresses. Although plant responses to K deficiency are well documented at the physiological and transcriptional levels, the miRNA-mediated post-transcriptional pathways are still not clearly elucidated. In this study, high-throughput sequencing and degradome analysis were performed using two barley genotypes differing in low-K tolerance (XZ149, tolerant and ZD9, sensitive), to determine the genotypic difference in miRNAs profiling. A total of 270 miRNAs were detected in the roots of XZ149 and ZD9 at 2 d and 10 d after low-K treatment, of which 195 were commonly found in both genotypes. Their targets were further investigated by bioinformatics prediction and degradome sequencing approach. The results showed that ata-miR1432-5p might act as a regulator participating in Ca~(2+) signaling pathways in response to low-K stress. The difference in the mlR444/MADS-box model as well as pathways mediated by miR319/TCP4 and miR396/GRF could be attributed to high tolerance to low-K stress in XZ149. In addition, other conserved and novel miRNAs families associated with low-K tolerance were also detected. The current results provide molecular evidence for understanding the possible involvement of miRNAs in the regulation of low-K tolerance.
机译:MicroRNAS cmirnas)在植物生长和发育中具有多种和至关重要的作用,包括对非生物胁迫的反应。虽然植物对K缺乏的反应在生理和转录水平上良好记录,但仍未明确阐明miRNA介导的后转录途径。在该研究中,使用两种大肠病(XZ149,耐受性和ZD9,敏感)不同的麦基基因型进行高通量测序和降低分析,以确定miRNA分析中的基因型差异。在XZ149和ZD9的根部在2d和10d之后,在低k治疗后,在XZ149和ZD9的根中检测到总共270个miRNA,其中常见于两种基因型中的195个。通过生物信息学预测和降低测量测序方法进一步研究了它们的靶标。结果表明,ATA-MIR1432-5P可能作为参与参与Ca〜(2+)信号传导途径的调节剂,响应于低k应力。 MLR444 / MADS箱模型以及MIR319 / TCP4和MIR396 / GR介导的途径的差异可能归因于XZ149中的低k应力的高耐受性。此外,还检测到与低k耐受相关的其他保守和新的miRNA家族。目前的结果提供了理解MiRNA在低k耐受调节中的可能参与的分子证据。

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