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首页> 外文期刊>African Journal of Biotechnology >MicroRNA expression profiling during upland cotton gland forming age by microarray and quantitative reverse-transcription polymerase chain reaction (qRT-PCR)
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MicroRNA expression profiling during upland cotton gland forming age by microarray and quantitative reverse-transcription polymerase chain reaction (qRT-PCR)

机译:通过微阵列和定量逆转录聚合酶链反应(QRT-PCR)在陆地棉质腺体形成年龄期间MicroRNA表达分析

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摘要

Plant microRNAs (miRNAs) have important impacts on growth, development, flowering, metabolism and response to stress. Studies indicate that post-transcriptional processes are important for regulating gene expression during development.?However, we still have very limited knowledge on the regulatory mechanisms associated with this process. In particular, the function of miRNAs during gland morphogenesis in cotton remains unknown. In this study, we used the Affymetrix GeneChip miRNA Array (v11.0-ther Species) and quantitative reverse transcriptase-PCR (qRT-PCR) to identify additional microRNAs during gland morphogenesis of near-isogenic lines in upland cotton. The results showed that 30 miRNAs were differentially expressed: 24 up-regulated (miR156, miR157, miR166 and miR390 families) and six down-regulated (miR149, miR169, miR289, miR705, miR1224 and miR1227 families). Some microRNAs, such as ghb-miR169a_st and ghr-miR166b_st, were confirmed by qRT-PCR assays. There was no significant difference in miRNA levels between the microarray and qRT-PCR. Analysis of the transcript data for some miRNA target genes indicated that they play an important role in the pathogenesis and development of gland morphogenesis. In summary, our results showed that some known miRNAs were expressed in the gland of upland cotton, and most of them were of low abundance. This data may be useful in future studies associated with gland control involved in the terpenoid aldehyde biosynthesis pathway, genetic engineering and molecular breeding of cotton.
机译:植物microRNAS(miRNA)对生长,发育,开花,新陈代谢和对压力的反应具有重要影响。研究表明,转录后过程对于调节发展过程中的基因表达是重要的。然而,我们仍然对与此过程相关的监管机制具有非常有限的知识。特别是,棉花在棉质中的腺体形态发生期间的功能仍然未知。在这项研究中,我们使用了Affymetrix GeneChip MiRNA阵列(V11.0- Ther物种)和定量逆转录酶-PCR(QRT-PCR),以识别普通棉中近代紫外线的腺体形态发生的额外微大血清。结果表明,30 miRNA差异表达:24例上调(MIR156,MIR157,MIR166和MIR390系列)和六个下调(MIR149,MIR169,MIR289,MIR705,MIR1224和MIR1227家族)。通过QRT-PCR测定证实了一些MicroRNA,例如GHB-MiR169A_ST和GHR-MIR166B_ST。微阵列和QRT-PCR之间的miRNA水平没有显着差异。对一些miRNA靶基因的转录数据分析表明它们在腺体形态发生的发病机制和发育中发挥着重要作用。总之,我们的结果表明,一些已知的miRNA在旱地棉的腺体中表达,大部分大部分都是低丰度。该数据可用于与参与三萜醛生物合成途径,基因工程和棉花的分子育种相关的腺体控制相关的研究。

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