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Comparative miRNAs analysis of Two contrasting broccoli inbred lines with divergent head-forming capacity under temperature stress

机译:在温度胁迫下两个不同头形成能力的西兰花自交系的对比miRNA分析

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MicroRNAs (miRNAs) play a vital role in growth, development, and stress response at the post-transcriptional level. Broccoli (Brassica oleracea L. var italic) is an important vegetable crop, and the yield and quality of broccoli are decreased by heat stress. The broccoli inbred lines that are capable of producing head at high temperature in summer are unique varieties in Taiwan. However, knowledge of miRNAomes during the broccoli head formation under heat stress is limited. In this study, molecular characterization of two nearly isogenic lines with contrasting head-forming capacity was investigated. Head-forming capacity was better for heat-tolerant (HT) than heat-sensitive (HS) broccoli under heat stress. By deep sequencing and computational analysis, 20 known miRNAs showed significant differential expression between HT and HS genotypes. According to the criteria for annotation of new miRNAs, 24 novel miRNA sequences with differential expression between the two genotypes were identified. To gain insight into functional significance, 213 unique potential targets of these 44 differentially expressed miRNAs were predicted. These targets were implicated in shoot apical development, phase change, response to temperature stimulus, hormone and energy metabolism. The head-forming capacity of the unique HT line was related to autonomous regulation of Bo-FT genes and less expression level of heat shock protein genes as compared to HS. For the genotypic comparison, a set of miRNAs and their targets had consistent expression patterns in various HT genotypes. This large-scale characterization of broccoli miRNAs and their potential targets is to unravel the regulatory roles of miRNAs underlying heat-tolerant head-forming capacity.
机译:微小RNA(miRNA)在转录后水平上在生长,发育和应激反应中起着至关重要的作用。西兰花(Brassica oleracea L. var italic)是一种重要的蔬菜作物,由于热胁迫,西兰花的产量和质量下降。在夏天能够高温繁殖的西兰花自交系是台湾独特的品种。但是,在热应力下西兰花头形成过程中,miRNAomes的知识是有限的。在这项研究中,研究了两个具有近端形成能力的近等基因系的分子特征。在热应力下,耐热性(HT)的头形成能力要好于耐热性(HS)的西兰花。通过深度测序和计算分析,已知的20种miRNA在HT和HS基因型之间表现出明显的差异表达。根据注释新miRNA的标准,鉴定了24种在两种基因型之间差异表达的新颖miRNA序列。为了深入了解功能重要性,预测了这44种差异表达的miRNA的213个独特的潜在靶标。这些目标与茎尖发育,相变,对温度刺激的反应,激素和能量代谢有关。与HS相比,独特的HT系的头部形成能力与Bo-FT基因的自主调控和热休克蛋白基因的表达水平低有关。为了进行基因型比较,一组miRNA及其靶标在各种HT基因型中具有一致的表达模式。西兰花miRNA及其潜在目标的大规模表征是为了揭示miRNA在耐热头部形成能力中的调控作用。

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