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Comparative Analysis of the Brassica napus Root and Leaf Transcript Profiling in Response to Drought Stress

机译:甘蓝型油菜根和叶片转录谱对干旱胁迫响应的比较分析

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摘要

Drought stress is one of the major abiotic factors affecting Brassica napus (B. napus) productivity. In order to identify genes of potential importance to drought stress and obtain a deeper understanding of the molecular mechanisms regarding the responses of B. napus to dehydration stress, we performed large-scale transcriptome sequencing of B. napus plants under dehydration stress using the Illumina sequencing technology. In this work, a relatively drought tolerant B. napus line, Q2, identified in our previous study, was used. Four cDNA libraries constructed from mRNAs of control and dehydration-treated root and leaf were sequenced by Illumina technology. A total of 6018 and 5377 differentially expressed genes (DEGs) were identified in root and leaf. In addition, 1745 genes exhibited a coordinated expression profile between the two tissues under drought stress, 1289 (approximately 74%) of which showed an inverse relationship, demonstrating different regulation patterns between the root and leaf. The gene ontology (GO) enrichment test indicated that up-regulated genes in root were mostly involved in “stimulus” “stress” biological process, and activated genes in leaf mainly functioned in “cell” “cell part” components. Furthermore, a comparative network related to plant hormone signal transduction and AREB/ABF, AP2/EREBP, NAC, WRKY and MYC/MYB transcription factors (TFs) provided a view of different stress tolerance mechanisms between root and leaf. Some of the DEGs identified may be candidates for future research aimed at detecting drought-responsive genes and will be useful for understanding the molecular mechanisms of drought tolerance in root and leaf of B. napus.
机译:干旱胁迫是影响甘蓝型油菜(B. napus)生产力的主要非生物因素之一。为了鉴定对干旱胁迫具有潜在重要性的基因,并加深对油菜对脱水胁迫反应的分子机制的了解,我们使用Illumina测序对脱水胁迫下的油菜植物进行了大规模转录组测序。技术。在这项工作中,使用了我们先前的研究中确定的相对耐旱的甘蓝型油菜品系Q2。通过Illumina技术对由对照和脱水处理的根和叶的mRNA构建的四个cDNA文库进行测序。在根和叶中鉴定出总共6018和5377个差异表达基因(DEG)。此外,1745个基因在干旱胁迫下在两个组织之间表现出协调的表达谱,其中1289个基因(约占74%)表现出反比关系,表明根与叶之间的调控方式不同。基因本体(GO)富集测试表明,根部上调的基因主要参与“刺激”“胁迫”生物过程,而叶片中的活化基因主要发挥“细胞”“细胞部分”的功能。此外,与植物激素信号转导和AREB / ABF,AP2 / EREBP,NAC,WRKY和MYC / MYB转录因子(TFs)相关的比较网络提供了根与叶之间不同胁迫耐受机制的观点。鉴定出的某些DEG可能是未来研究的候选物,目的是检测干旱响应基因,并将有助于了解油菜根和叶的耐旱性分子机制。

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