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OnPLS integration of transcriptomic, proteomic and metabolomic data shows multi-level oxidative stress responses in the cambium of transgenic hipI- superoxide dismutase Populus plants

机译:转录组,蛋白质组学和代谢组学数据的OnPLS整合显示,转基因髋部超氧化物歧化酶胡杨植物形成层中的多级氧化应激反应

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BACKGROUND: Reactive oxygen species (ROS) are involved in the regulation of diverse physiological processes in plants, including various biotic and abiotic stress responses. Thus, oxidative stress tolerance mechanisms in plants are complex, and diverse responses at multiple levels need to be characterized in order to understand them. Here we present system responses to oxidative stress in Populus by integrating data from analyses of the cambial region of wild-type controls and plants expressing high-isoelectric-point superoxide dismutase (hipI-SOD) transcripts in antisense orientation showing a higher production of superoxide. The cambium, a thin cell layer, generates cells that differentiate to form either phloem or xylem and is hypothesized to be a major reason for phenotypic perturbations in the transgenic plants. Data from multiple platforms including transcriptomics (microarray analysis), proteomics (UPLC/QTOF-MS), and metabolomics (GC-TOF/MS, UPLC/MS, and UHPLC-LTQ/MS) were integrated using the most recent development of orthogonal projections to latent structures called OnPLS. OnPLS is a symmetrical multi-block method that does not depend on the order of analysis when more than two blocks are analysed. Significantly affected genes, proteins and metabolites were then visualized in painted pathway diagrams. RESULTS: The main categories that appear to be significantly influenced in the transgenic plants were pathways related to redox regulation, carbon metabolism and protein degradation, e.g. the glycolysis and pentose phosphate pathways (PPP). The results provide system-level information on ROS metabolism and responses to oxidative stress, and indicate that some initial responses to oxidative stress may share common pathways. CONCLUSION: The proposed data evaluation strategy shows an efficient way of compiling complex, multi-platform datasets to obtain significant biological information.
机译:背景:活性氧(ROS)参与植物各种生理过程的调控,包括各种生物和非生物胁迫响应。因此,植物中的氧化胁迫耐受机制是复杂的,并且需要表征多个水平的多种响应以便理解它们。在这里,我们通过对野生型对照和植物在反义方向上表达高等电点超氧化物歧化酶(hipI-SOD)转录本的植物的冈比亚区域的分析数据进行整合,从而提出了对胡杨中氧化应激的系统响应,显示了更高的超氧化物产生。形成层是一层薄薄的细胞层,产生的细胞分化形成韧皮部或木质部,并被认为是转基因植物表型扰动的主要原因。使用正交投影的最新发展,整合了包括转录组学(微阵列分析),蛋白质组学(UPLC / QTOF-MS)和代谢组学(GC-TOF / MS,UPLC / MS和UHPLC-LTQ / MS)在内的多个平台的数据到称为OnPLS的潜在结构。 OnPLS是一种对称的多块方法,当分析两个以上的块时,它不依赖于分析顺序。显着受影响的基因,蛋白质和代谢物随后在绘制的途径图中显示。结果:在转基因植物中似乎受到显着影响的主要类别是与氧化还原调节,碳代谢和蛋白质降解有关的途径,例如糖酵解和磷酸戊糖途径(PPP)。结果提供了有关ROS代谢和对氧化应激反应的系统级信息,并表明对氧化应激的一些初始反应可能共享共同的途径。结论:提出的数据评估策略显示了一种有效的方法,可以编译复杂的多平台数据集以获得重要的生物学信息。

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