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Stars and Symbiosis: MicroRNA- and MicroRNA*-Mediated Transcript Cleavage Involved in Arbuscular Mycorrhizal Symbiosis1[W][OA]

机译:星星和共生:丛枝菌根共生涉及MicroRNA和MicroRNA *介导的转录切割[W] [OA]

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摘要

The majority of plants are able to form the arbuscular mycorrhizal (AM) symbiosis in association with AM fungi. During symbiosis development, plant cells undergo a complex reprogramming resulting in profound morphological and physiological changes. MicroRNAs (miRNAs) are important components of the regulatory network of plant cells. To unravel the impact of miRNAs and miRNA-mediated mRNA cleavage on root cell reprogramming during AM symbiosis, we carried out high-throughput (Illumina) sequencing of small RNAs and degradome tags of Medicago truncatula roots. This led to the annotation of 243 novel miRNAs. An increased accumulation of several novel and conserved miRNAs in mycorrhizal roots suggest a role of these miRNAs during AM symbiosis. The degradome analysis led to the identification of 185 root transcripts as mature miRNA and also miRNA*-mediated mRNA cleavage targets. Several of the identified miRNA targets are known to be involved in root symbioses. In summary, the increased accumulation of specific miRNAs and the miRNA-mediated cleavage of symbiosis-relevant genes indicate that miRNAs are an important part of the regulatory network leading to symbiosis development.
机译:大多数植物能够与AM真菌形成丛枝菌根(AM)共生。在共生发展过程中,植物细胞会经历复杂的重编程,从而导致深刻的形态和生理变化。微小RNA(miRNA)是植物细胞调控网络的重要组成部分。为了揭示AM共生过程中miRNA和miRNA介导的mRNA切割对根细胞重编程的影响,我们对小RNA和run藜苜蓿根的降解组进行了高通量(Illumina)测序。这导致了243种新型miRNA的注释。菌根中几种新颖且保守的miRNA积累的增加表明这些miRNA在AM共生过程中发挥了作用。降解组分析导致鉴定出185个根转录物为成熟的miRNA,也鉴定为miRNA *介导的mRNA切割靶标。已知一些已鉴定的miRNA靶标与根共生有关。总之,特定miRNA的积累增加以及与共生相关的基因的miRNA介导的裂解表明,miRNA是导致共生发展的调控网络的重要组成部分。

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