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首页> 外文期刊>Plant Cell Reports >Expression profiles of precursor and mature micrornas under dehydration and high salinity shock in Populus euphratica.
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Expression profiles of precursor and mature micrornas under dehydration and high salinity shock in Populus euphratica.

机译:胡杨(Populus euphratica)中脱水和高盐度冲击下前体和成熟微生物的表达谱。

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MicroRNAs (miRNAs) are small non-coding RNAs that play vital roles in plant abiotic stress responses via cleavage or translational inhibition of their target mRNAs. Populus euphratica is a typical stress-resistant sessile organism that grows in desert areas. Here, we identified sequences of 12 miRNA precursors from 11 families and 13 mature miRNAs from 12 families by PCR amplification in P. euphratica. To detect expression differences in mature miRNAs and their precursors under dehydration and high salinity shock in P. euphratica, we examined 14 miRNA precursors from 13 miRNA families and 17 mature miRNAs from 17 miRNA families using the SYBR Green RT-PCR assay. This is the first report of expression profiles for both precursor and mature miRNAs in P. euphratica. By profiling both the mature miRNAs and the precursors under abiotic stress shock, it was possible to identify miRNA whose processing is regulated during stress shock environments. A majority of the genes predicted to be targets for plant miRNAs are involved in development, stress resistance and metabolic processes. We have cloned and experimentally identified in vivo five of the predicted target genes and quantified the five target mRNAs from the same RNA sample simultaneously. Based on this study, we propose some regulatory pathways that illustrate the important role that miRNAs play in response to abiotic stress shock in P. euphratica.
机译:MicroRNA(miRNA)是小的非编码RNA,它们通过切割或翻译抑制其靶mRNA在植物非生物胁迫响应中发挥重要作用。 胡杨>是一种典型的抗胁迫无柄生物,生长在沙漠地区。在这里,我们通过在iP中进行PCR扩增,鉴定了11个家族的12个miRNA前体和12个家族的13个成熟miRNA的序列。胡杨。为了检测iP在脱水和高盐度冲击下成熟miRNA及其前体的表达差异。 euphratica ,我们使用SYBR Green RT-PCR检测了13个miRNA家族的14个miRNA前体和17个miRNA家族的17个成熟miRNA。这是关于iP中前体和成熟miRNA的表达谱的首次报道。胡杨。通过在非生物胁迫下对成熟的miRNA和前体进行分析,可以鉴定在胁迫冲击环境下其加工受到调控的miRNA。预测为植物miRNA靶标的大多数基因都参与了发育,抗逆性和代谢过程。我们已经在体内克隆和实验鉴定了五个预测的靶基因,并同时从同一RNA样品中定量了五个靶mRNA。基于这项研究,我们提出了一些调控途径,这些途径说明了miRNA在P中响应非生物胁迫引起的重要作用。胡杨

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