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miRNAs involved in the development and differentiation of fertile and sterile flowers in Viburnum macrocephalum f. keteleeri

机译:miRNA参与了荚Vi荚Vi的可育和不育花朵的发育和分化。凯特列里

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Background Sterile and fertile flowers are important evolutionary developmental phenotypes in angiosperm flowers. The development of floral organs, critical in angiosperm reproduction, is regulated by microRNAs (miRNAs). However, the mechanisms underpinning the miRNA regulation of the differentiation and development of sterile and fertile flowers remain unclear. Results Here, based on investigations of the morphological differences between fertile and sterile flowers, we used high-throughput sequencing to characterize the miRNAs in the differentiated floral organs of Viburnum macrocephalum f. keteleeri . We identified 49 known miRNAs and 67 novel miRNAs by small RNA (sRNA) sequencing and bioinformatics analysis, and 17 of these known and novel miRNA precursors were validated by polymerase chain reaction (PCR) and Sanger sequencing. Furthermore, by comparing the sequencing results of two sRNA libraries, we found that 30 known and 39 novel miRNA sequences were differentially expressed, and 35 were upregulated and 34 downregulated in sterile compared with fertile flowers. Combined with their predicted targets, the potential roles of miRNAs in V . macrocephalum f. keteleeri flowers include involvement in floral organogenesis, cell proliferation, hormonal pathways, and stress responses. miRNA precursors and targets were further validated by quantitative real-time PCR (qRT-PCR). Specifically, miR156a-5p, miR156g, and miR156j expression levels were significantly higher in fertile flowers than in sterile flowers, while SPL genes displayed the opposite expression pattern. Considering that the targets of miR156 are predicted to be SPL genes, we propose that miR156 may be involved in the regulation of stamen development in V . macrocephalum f . keteleeri. Conclusions We identified miRNAs differentially expressed between fertile and sterile flowers in V . macrocephalum f. keteleeri and provided new insights into the important regulatory roles of miRNAs in the differentiation and development of fertile and sterile flowers.
机译:背景不育花和可育花是被子植物花中重要的进化发育表型。在被子植物繁殖中至关重要的花器官的发育受microRNA(miRNA)调控。但是,尚不清楚miRNA调控不育和可育花的分化和发育的机制。结果在此,根据对可育花和不育花之间形态差异的研究,我们使用高通量测序来表征荚Vi大花floral分化花器官中的miRNA。 keteleeri。我们通过小RNA(sRNA)测序和生物信息学分析鉴定了49种已知的miRNA和67种新颖的miRNA,其中17种已知和新颖的miRNA前体已通过聚合酶链反应(PCR)和Sanger测序验证。此外,通过比较两个sRNA文库的测序结果,我们发现与可育花相比,在无菌条件下差异表达了30个已知和39个新的miRNA序列,其中35个上调而34个下调。结合其预测的靶标,miRNA在V中的潜在作用。大头目f。 keteleeri花包括花器官发生,细胞增殖,激素途径和应激反应。通过定量实时PCR(qRT-PCR)进一步验证了miRNA前体和靶标。具体而言,可育花中的miR156a-5p,miR156g和miR156j的表达水平显着高于不育花,而SPL基因则显示出相反的表达模式。考虑到预期miR156的靶标是SPL基因,我们建议miR156可能参与V雄蕊发育的调控。大头目f。 keteleeri。结论我们鉴定了V中可育和不育花间差异表达的miRNA。大头目f。 keteleeri,为miRNA在可育和不育花朵的分化和发育中的重要调控作用提供了新见解。

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