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Identification of microRNA targets in tomato fruit development using high-throughput sequencing and degradome analysis

机译:使用高通量测序和降解组学分析鉴定番茄果实发育中的microRNA靶标

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摘要

MicroRNAs (miRNAs) play important roles in plant development through regulation of gene expression by mRNA degradation or translational inhibition. Despite the fact that tomato (Solanum lycopersicum) is the model system for studying fleshy fruit development and ripening, only a few experimentally proven miRNA targets are known, and the role of miRNA action in these processes remains largely unknown. Here, by using parallel analysis of RNA ends (PARE) for global identification of miRNA targets and comparing four different stages of tomato fruit development, a total of 119 target genes of miRNAs were identified. Of these, 106 appeared to be new targets. A large part of the identified targets (56) coded for transcription factors. Auxin response factors, as well as two known ripening regulators, COLORLESS NON-RIPENING (CNR) and APETALA2a (SlAP2a), with developmentally regulated degradation patterns were identified. The levels of the intact messenger of both CNR and AP2a are actively modulated during ripening, by miR156/157 and miR172, respectively. Additionally, two TAS3-mRNA loci were identified as targets of miR390. Other targets such as ARGONAUTE 1 (AGO1), shown to be involved in miRNA biogenesis in other plant species, were identified, which suggests a feedback loop regulation of this process. In this study, it is shown that miRNA-guided cleavage of mRNAs is likely to play an important role in tomato fruit development and ripening.
机译:微小RNA(miRNA)通过通过mRNA降解或翻译抑制调节基因表达,从而在植物发育中发挥重要作用。尽管事实是番茄(Solanum lycopersicum)是用于研究果肉发育和成熟的模型系统,但只有少数经过实验证明的miRNA靶标是已知的,而且在这些过程中miRNA的作用仍然未知。在这里,通过对RNA末端(PARE)进行平行分析以全面鉴定miRNA靶标,并比较番茄果实发育的四个不同阶段,总共鉴定出119个miRNA靶标基因。其中106个似乎是新目标。大部分识别的靶标(56)编码转录因子。确认了生长素响应因子以及两个已知的成熟调节剂,无色无带(CNR)和APETALA2a(S1AP2a),具有发育调控的降解模式。 CNR和AP2a的完整信使水平在成熟期间分别由miR156 / 157和miR172主动调节。此外,两个TAS3-mRNA基因座被确定为miR390的目标。确定了其他靶标,例如ARGONAUTE 1(AGO1),已证明与其他植物物种的miRNA生物发生有关,这表明该过程存在反馈环调控。在这项研究中,显示了miRNA指导的mRNA切割可能在番茄果实的发育和成熟中起重要作用。

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