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Transcriptome profiling of Eucalyptus nitens reveals deeper insight into the molecular mechanism of cold acclimation and deacclimation process

机译:桉树的转录组谱分析揭示了对冷驯化和去驯化过程的分子机制的更深入了解

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摘要

Eucalyptus nitens (H. Deane & Maiden) is a fast-growing species used principally for pulpwood and solid-wood production. Due to its cold tolerance, it is preferred over other Eucalyptus species at high elevations. To get a deeper insight in the molecular mechanisms of cold acclimation, the transcriptome profiling by RNA-Seq in plants of E. nitens under cold acclimation and deacclimation process was compared in order to identify differentially expressed genes (DEGs). Transcriptomes from control, cold acclimated to chilling temperature, cold acclimated at freezing temperature, and deacclimation condition were compared using Eucalyptus grandis as reference genome. The differential expression analysis allowed the identification of a total of 1600 DEGs out of which 1088 and 1071 were identified in response to cold acclimation and deacclimation, respectively. The gene ontology analysis revealed that DEGs were significantly enriched in response to stimulus, response to abiotic stimulus, membrane, catalytic activity, and cell periphery. Furthermore, the biochemical pathways analysis revealed a large number of DEGs represented in the biosynthesis of phenylpropanoids, specifically flavonoid biosynthesis likely to support ROS scarvening, genes related to photosynthesis, genes that take part in glycolysis/gluconeogenesis related to starch biosynthesis pathway, and genes represented in carotenoid biosynthesis pathway suggesting a role in the regulation of ABA synthesis, which has been previously involved in stress tolerance. A total of 115 DEGs corresponding to transcription factors were identified, being the most represented families AP2, MYB, and WRKY. Expression of six DEGs was validated using qRT-PCR that further supported the in silico results. The present study provides a comprehensive view of global gene expression and revealed valuable information about the dynamic and complex nature of gene expression occurring during cold acclimation and deacclimation process in E. nitens.
机译:桉树(H. Deane&Maiden)是一种快速生长的树种,主要用于纸浆和实木生产。由于其耐寒性,在高海拔地区它比其他桉树种更可取。为了更深入地了解冷驯化的分子机制,比较了在冷驯化和去驯化过程中,大肠杆菌在植物中通过RNA-Seq进行的转录组分析,以鉴定差异表达基因(DEG)。以大桉作为参考基因组,比较了对照的转录组,冷适应冷温度,冻适应冷温度和去适应条件的转录组。差异表达分析允许鉴定总共1600个DEG,其中分别响应冷适应和去适应而鉴定出1088和1071。基因本体分析表明,DEGs对刺激,对非生物刺激,膜,催化活性和细胞外围的响应显着丰富。此外,生化途径分析表明,在苯丙烷类化合物的生物合成中存在大量DEG,特别是可能支持ROS抑制的类黄酮生物合成,与光合作用相关的基因,参与与淀粉生物合成途径相关的糖酵解/糖异生的基因,以及代表的基因类胡萝卜素的生物合成途径中的“α-α”暗示在ABA合成的调节中起作用,该ABA先前已经参与了胁迫耐受性。总共鉴定出115个与转录因子相对应的DEG,它们是AP2,MYB和WRKY家族中代表性最强的家族。使用进一步支持计算机结果的qRT-PCR验证了六个DEG的表达。本研究提供了全局基因表达的全面视图,并揭示了有关在大肠杆菌中冷适应和去适应过程中发生的基因表达的动态和复杂性质的有价值的信息。

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