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Genome-wide identification of vegetative phase transition-associated microRNAs and target predictions using degradome sequencing in Malus hupehensis

机译:基因组鉴定营养期转变相关的微大血管和靶测量测量术中的靶预测

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A long juvenile period between germination and flowering is a common characteristic among fruit trees, including Malus hupehensis (Pamp.) Rehd., which is an apple rootstock widely used in China. microRNAs (miRNAs) play an important role in the regulation of phase transition and reproductive growth processes. M. hupehensis RNA libraries, one adult and one juvenile phase, were constructed using tree leaves and underwent high-throughput sequencing. We identified 42 known miRNA families and 172 novel miRNAs. We also identified 127 targets for 25 known miRNA families and 168 targets for 35 unique novel miRNAs using degradome sequencing. The identified miRNA targets were categorized into 58 biological processes, and the 123 targets of known miRNAs were associated with phase transition processes. The KEGG analysis revealed that these targets were involved in starch and sucrose metabolism, and plant hormone signal transduction. Expression profiling of miRNAs and their targets indicated multiple regulatory functions in the phase transition. The higher expression level of mdm-miR156 and lower expression level of mdm-miR172 in the juvenile phase leaves implied that these two small miRNAs regulated the phase transition. mdm-miR160 and miRNA393, which regulate genes involved in auxin signal transduction, could also be involved in controlling this process. The identification of known and novel miRNAs and their targets provides new information on this regulatory process in M. hupehensis, which will contribute to the understanding of miRNA functions during growth, phase transition and reproduction in woody fruit trees. The combination of sRNA and degradome sequencing can be used to better illustrate the profiling of hormone-regulated miRNAs and miRNA targets involving complex regulatory networks, which will contribute to the understanding of miRNA functions during growth, phase transition and reproductive growth in perennial woody fruit trees.
机译:萌发和开花之间的漫长的少年期是果树的常见特征,包括Malus hupehensis(PAMP。)REHD。,它是中国广泛使用的苹果砧木。 MicroRNA(miRNA)在相转移和生殖生长过程的调节中起重要作用。 M. Hupehensis RNA文库,一个成人和一个幼年相,使用树叶和接受高通量测序构建。我们鉴定了42家已知的miRNA家庭和172个新的miRNA。我们还确定了25个已知的miRNA家族的127个靶标和35个独特的新型miRNA的168个靶标,使用降低测量测序。将鉴定的miRNA靶标分为58个生物学过程,并且已知的miRNA的123个靶标与相转变过程相关。 Kegg分析显示,这些靶标涉及淀粉和蔗糖代谢和植物激素信号转导。 miRNA的表达分析及其目标表明了相转变中的多个监管功能。 MDM-miR156的较高表达水平和少年相叶中MDM-miR172的较低表达水平暗示这两个小miRNA调节相转变。 MDM-MIR160和miRNA393调节涉及疾病信号转导的基因,也可以参与控制该过程。已知和新的miRNA及其目标的鉴定提供了有关血腥血症的这种调控过程的新信息,这将有助于了解木质果树中的生长,阶段过渡和繁殖期间miRNA功能。 SRNA和降低测序的组合可用于更好地说明激素调节的miRNA和涉及复杂调节网络的miRNA靶标的分析,这将有助于在多年生木质果树中的生长,相转变和生殖生长期间对miRNA功能的理解。

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