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首页> 外文期刊>BMC Plant Biology >Transcriptional regulation of Lonicera japonica Thunb. during flower development as revealed by comprehensive analysis of transcription factors
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Transcriptional regulation of Lonicera japonica Thunb. during flower development as revealed by comprehensive analysis of transcription factors

机译:忍冬忍冬的转录调控。通过转录因子的综合分析揭示了在花发育过程中

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Lonicera japonica Thunb. flower has been used for the treatment of various diseases for a long time and attracted many studies on its potential effects. Transcription factors (TFs) regulate extensive biological processes during plant development. As the restricted reports of L. japonica on TFs, our work was carried out to better understand the TFs’ regulatory roles under different developmental stages in L. japonica. In this study, 1316 TFs belonging to 52 families were identified from the transcriptomic data, and corresponding expression profiles during the L. japonica flower development were comprehensively analyzed. 917 (69.68%) TFs were differentially expressed. TFs in bHLH, ERF, MYB, bZIP, and NAC families exhibited obviously altered expression during flower growth. Based on the analysis of differentially expressed TFs (DETFs), TFs in MYB, WRKY, NAC and LSD families that involved in phenylpropanoids biosynthesis, senescence processes and antioxidant activity were detected. The expression of MYB114 exhibited a positive correlation with the contents of luteoloside; Positive correlation was observed among the expression of MYC12, chalcone synthase (CHS) and flavonol synthase (FLS), while negative correlation was observed between the expression of MYB44 and the synthases; The expression of LSD1 was highly correlated with the expression of SOD and the total antioxidant capacity, while the expression of LOL1 and LOL2 exhibited a negative correlation with them; Many TFs in NAC and WRKY families may be potentially involved in the senescence process regulated by hormones and reactive oxygen species (ROS). The expression of NAC19, NAC29, and NAC53 exhibited a positive correlation with the contents of ABA and H2O2, while the expression of WRKY53, WRKY54, and WRKY70 exhibited a negative correlation with the contents of JA, SA and ABA. Our study provided a comprehensive characterization of the expression profiles of TFs during the developmental stages of L. japonica. In addition, we detected the key TFs that may play significant roles in controlling active components biosynthesis, antioxidant activity and flower senescence in L. japonica, thereby providing valuable insights into the molecular networks underlying L. japonica flower development.
机译:忍冬。花已经被用于治疗多种疾病很长一段时间,并引起了许多关于其潜在作用的研究。转录因子(TFs)调节植物发育过程中的广泛生物过程。由于粳稻对TF的报道有限,我们的工作旨在更好地了解TF在粳稻不同发育阶段的调控作用。在这项研究中,从转录组数据中鉴定出属于52个科的1316个TF,并全面分析了日本粳稻花发育过程中的相应表达谱。差异表达了917个(69.68%)TF。 bHLH,ERF,MYB,bZIP和NAC家族中的TF在花的生长过程中表现出明显的表达变化。根据差异表达的TF(DETF)的分析,检测到MYB,WRKY,NAC和LSD系列中涉及苯丙烷类生物合成,衰老过程和抗氧化活性的TF。 MYB114的表达与黄体苷的含量呈正相关; MYC12,查尔酮合酶(CHS)和黄酮醇合酶(FLS)的表达呈正相关,而MYB44和合酶的表达呈负相关。 LSD1的表达与SOD的表达和总抗氧化能力高度相关,而LOL1和LOL2的表达与它们呈负相关。 NAC和WRKY家族中的许多TF可能参与激素和活性氧(ROS)调节的衰老过程。 NAC19,NAC29和NAC53的表达与ABA和H2O2的含量呈正相关,而WRKY53,WRKY54和WRKY70的表达与JA,SA和ABA的含量呈负相关。我们的研究提供了在L. japonica发育阶段TFs表达谱的全面表征。此外,我们检测到了关键的TF,它们可能在控制日本粳稻中的活性成分生物合成,抗氧化活性和花衰老中起重要作用,从而为日本粳稻花发育的分子网络提供了有价值的见解。

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