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Global analysis of microRNA in Arabidopsis in response to phosphate starvation as studied by locked nucleic acid-based microarrays

机译:锁定的基于核酸的微阵列研究了拟南芥中响应磷酸盐饥饿的microRNA的全局分析

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MicroRNAs (miRNAs) are short RNA chains (20-24 bp) which are emerging as important regulators of gene expression. miRNAs are encoded by specific genes, and in Arabidopsis, 190 genes have presently been identified. It has been shown that miR399 is essential for the phosphate starvation response, and recent studies have shown transcriptional changes in a number of additional miRNAs in response to a shortage of phosphate. In this study, global profiles of the miRNA in shoots of Arabidopsis plants grown on limited phosphate or full nutrient in combination with sucrose feed were analysed using the miRCURY LNA (TM) microRNA Array system. Furthermore, changes in miRNA transcript were compared between a mutant lacking the transcription factor phosphate starvation responses 1 (PHR1) and wild-type plants. The global analysis identified miRNAs belonging to nine families to respond to P deprivation, sucrose or PHR1. Among these, miR399d, miR827, miR866, miR391 and miR163 were most prominently induced upon P starvation, whereas miR169b/c was strongly induced in previously starved plants when provided with sufficient P and more so when combined with an addition of sucrose. This study shows that array analysis is in general agreement with data obtained by other high-throughput technologies. The array data were confirmed by real-time reverse transcriptase-polymerase chain reaction analyses of selected pri-miRNAs. Our data corroborate the implication that several miRNAs are involved in the P-starvation response and further identify miR866 and miR163 as new candidates of miRNAs associated with the regulation of the P-starvation response.
机译:MicroRNA(miRNA)是短RNA链(20-24 bp),正在逐渐成为基因表达的重要调节剂。 miRNA由特定基因编码,在拟南芥中,目前已鉴定出190个基因。已经表明,miR399对于磷酸盐饥饿反应是必不可少的,并且最近的研究表明,响应于磷酸盐的缺乏,许多其他miRNA的转录变化。在这项研究中,使用miRCURY LNA(TM)microRNA Array系统分析了在有限的磷酸盐或全营养条件下与蔗糖饲料一起生长的拟南芥植物芽中miRNA的总体概况。此外,比较了缺少转录因子磷酸饥饿反应1(PHR1)的突变体和野生型植物之间miRNA转录的变化。全局分析确定了属于9个家族的miRNA对P缺乏,蔗糖或PHR1有反应。其中,miR399d,miR827,miR866,miR391和miR163在P饥饿时最显着诱导,而miR169b / c在先前饥饿的植物中提供足够的P时被强烈诱导,而在添加蔗糖的情况下则更强烈。这项研究表明,阵列分析与其他高通量技术获得的数据总体上是一致的。阵列数据通过选定的pri-miRNA的实时逆转录酶-聚合酶链反应分析得到证实。我们的数据证实了几种miRNA参与P饥饿反应的暗示,并进一步确定了miR866和miR163是与P饥饿反应调节相关的miRNA的新候选者。

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