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miRNA–mRNA Integrated Analysis Reveals Roles for miRNAs in a Typical Halophyte Reaumuria soongorica during Seed Germination under Salt Stress

机译:miRNA–mRNA集成分析揭示了盐胁迫下种子萌发过程中典型盐生植物金合欢中miRNA的作用

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摘要

MicroRNAs (miRNAs) are endogenous small RNAs that play a crucial role in plant growth, development, and environmental stress responses. is a typical halophyte that is widely distributed in saline–alkali desert regions. Under salt stress, can complete germination, a critical biological process in the life cycle of seed plants. To identify miRNAs and predict target mRNAs involved in seed germination during salt stress, nine small-RNA libraries were constructed and analyzed from seeds treated with various concentrations of NaCl. We also obtained transcriptome data under the same treatment conditions. Further analysis identified 88 conserved miRNAs representing 25 defined families and discovered 13 novel miRNAs from nine libraries. A co-expression analysis was performed on the same samples to identify putative miRNA–mRNA interactions that were responsive to salt stress. A comparative analysis of expression during germination under 273 (threshold) and 43 mM (optimal) NaCl treatments identified 13 differentially expressed miRNAs and 23 corresponding target mRNAs, while a comparison between 43 mM NaCl and non-salt-stress conditions uncovered one differentially expressed miRNA and one corresponding target mRNA. These results provide basic data for further study of molecular mechanisms involved in the germination of salt-stressed seeds, and also provide a reference for the improvement of salt tolerance during plant germination.
机译:微小RNA(miRNA)是内源性小RNA,在植物生长,发育和环境胁迫反应中发挥关键作用。是典型的盐生植物,广泛分布于盐碱沙漠地区。在盐胁迫下,可以完成发芽,这是种子植物生命周期中的关键生物过程。为了鉴定盐胁迫期间种子萌发中的miRNA和预测目标mRNA,从用不同浓度的NaCl处理过的种子中构建了9个小RNA库并进行了分析。我们还获得了在相同治疗条件下的转录组数据。进一步的分析鉴定了代表25个定义家族的88个保守miRNA,并从9个文库中发现了13个新颖的miRNA。在相同样品上进行了共表达分析,以鉴定对盐胁迫有响应的假定的miRNA-mRNA相互作用。在273种(阈值)和43 mM(最佳)NaCl处理下发芽期间的表达比较分析确定了13种差异表达的miRNA和23种相应的靶mRNA,而43 mM NaCl和非盐胁迫条件下的比较发现了一种差异表达的miRNA。和一种相应的靶mRNA。这些结果为进一步研究盐胁迫种子发芽的分子机制提供了基础数据,也为提高植物发芽期间的耐盐性提供了参考。

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