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Metabolite profiling of potato (Solanum tuberosum) tubers during wound-induced suberization.

机译:伤口引起的干化过程中马铃薯(Solanum tuberosum)块茎的代谢产物分析。

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摘要

Suberin, a cell specific, wall-associated biopolymer, is formed during normal plant growth and development as well as in response to stress conditions such as wounding. It is characterized by the deposition of both a poly(phenolic) domain (SPPD) in the cell wall and a poly(aliphatic) domain (SPAD) thought to be deposited between the cell wall and plasma membrane. Although the monomeric components of suberin are well known, its biosynthesis and deposition is poorly understood. Using wound healing potato (Solanum tuberosum) tuber as a model system, a targeted metabolite analysis was performed. The accumulation patterns of suberin aliphatics (including the soluble pool and the SPAD) and the flux of carbon into the aliphatic monomers of the SPAD were tracked in a time course fashion. From these analyses, It is demonstrated that newly formed fatty acids undergo one of two main metabolic fates during wound-induced suberization: (1) desaturation followed by oxidation to form the 18:1 o-hydroxy and dioic acids, characteristic of potato suberin, and (2) elongation to very long chain fatty acids (C20 to C28), associated with reduction to 1-alkanols, decarboxylation to n-alkanes and minor amounts of hydroxylation.;To better understand the biosynthesis of suberin from a more global perspective, a metabolite profiling study was further conducted. Both soluble polar and soluble non-polar metabolite profiles were created in a time course fashion. Cluster analyses (PCA and HCA) of these metabolic profiles allowed not only the visualization of the separation of the time series samples, but also the distinction of the most influential metabolites for cluster formation. Furthermore, pair-wise correlation analysis of these metabolites revealed some interesting associations between metabolites. It was concluded that the targeted metabolite analysis combined with carbon flux analysis illustrated metabolic regulation during wound healing process, and provided insight into the organization of fatty acid metabolism. The metabolite profiling study provided new insights into the complex suberization process. It allowed the visualization of different stages of wound-induced suberization, clear distinction between polar and non-polar metabolism, time delay and shift from non-induced to induced metabolism, and the clear separation of suberin-associated metabolites from those induced by wounding. Pairwise correlation analysis may further help to identify unknown metabolites and make the connection of them with other metabolites associated with suberization.;Keywords. Solanum tuberosum, wound-induced suberization, suberin poly(aliphatic) domain, suberin poly(phenolic) domain, targeted metabolite analysis, carbon flux analysis, metabolite profiling, PCA, HCA, pairwise correlation analysis.
机译:Suberin是细胞特异性的,与壁相关的生物聚合物,在正常植物的生长和发育过程中以及响应胁迫条件(例如受伤)时形成。它的特征是在细胞壁中同时沉积了多酚结构域(SPPD)和被认为沉积在细胞壁与质膜之间的聚(脂族)域(SPAD)。尽管木栓质的单体成分是众所周知的,但对其生物合成和沉积的了解却很少。使用伤口愈合马铃薯(Solanum tuberosum)块茎为模型系统,进行了目标代谢物分析。以时间过程的方式跟踪了木栓质脂肪族化合物(包括可溶性库和SPAD)的积累模式以及碳向SPAD的脂肪族单体的通量。从这些分析中可以证明,新形成的脂肪酸在伤口诱导的亚硫酸化过程中会经历两种主要的代谢命运之一:(1)脱饱和后再氧化形成18:1的邻羟基羟基和二羟乙酸,这是马铃薯木脂蛋白的特征, (2)延长至非常长链的脂肪酸(C20至C28),与还原为1-链烷醇,脱羧为正烷烃和少量的羟基化有关。为了从更全局的角度更好地了解木栓素的生物合成,进一步进行了代谢物分析研究。可溶性极性和可溶性非极性代谢物谱均以时程方式创建。这些代谢谱的聚类分析(PCA和HCA)不仅使时间序列样品的分离可视化,而且可以区分最具影响力的代谢物以形成聚类。此外,这些代谢物的成对相关分析揭示了代谢物之间一些有趣的关联。结论是,靶向代谢物分析与碳通量分析相结合说明了伤口愈合过程中的代谢调节,并提供了对脂肪酸代谢组织的了解。代谢物谱分析研究为复杂的置换过程提供了新的见解。它可以直观显示伤口诱导的亚硫酸化的不同阶段,极性和非极性代谢之间的明显区别,时间延迟和从非诱导代谢到诱导代谢的转变,以及与创伤相关的代谢物与地塞林相关的代谢物的清晰分离。成对相关分析可以进一步帮助识别未知代谢物,并使它们与与消减作用相关的其他代谢物建立联系。马铃薯,伤口诱导的干化,木脂蛋白多(脂族)域,木脂蛋白多(酚)域,目标代谢物分析,碳通量分析,代谢物谱,PCA,HCA,成对相关分析。

著录项

  • 作者

    Yang, Weili.;

  • 作者单位

    The University of Western Ontario (Canada).;

  • 授予单位 The University of Western Ontario (Canada).;
  • 学科 Agriculture Plant Pathology.;Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 131 p.
  • 总页数 131
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物病理学;植物学;
  • 关键词

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