首页> 美国卫生研究院文献>Frontiers in Plant Science >Integrative omic analysis reveals distinctive cold responses in leaves and roots of strawberry Fragaria × ananassa ‘Korona’
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Integrative omic analysis reveals distinctive cold responses in leaves and roots of strawberry Fragaria × ananassa ‘Korona’

机译:综合的组学分析显示草莓草莓和草莓(Fanaaria×ananassa Korona)的叶片和根部有明显的冷反应。

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摘要

To assess underlying metabolic processes and regulatory mechanisms during cold exposure of strawberry, integrative “omic” approaches were applied to Fragaria × ananassa Duch. ‘Korona.’ Both root and leaf tissues were examined for responses to the cold acclimation processes. Levels of metabolites, proteins, and transcripts in tissues from plants grown at 18°C were compared to those following 1–10 days of cold (2°C) exposure. When leaves and roots were subjected to GC/TOF-MS-based metabolite profiling, about 160 compounds comprising mostly structurally annotated primary and secondary metabolites, were found. Overall, ‘Korona’ showed a modest increase of protective metabolites such as amino acids (aspartic acid, leucine, isoleucine, and valine), pentoses, phosphorylated and non-phosphorylated hexoses, and distinct compounds of the raffinose pathway (galactinol and raffinose). Distinctive responses were observed in roots and leaves. By 2DE proteomics a total of 845 spots were observed in leaves; 4.6% changed significantly in response to cold. Twenty-one proteins were identified, many of which were associated with general metabolism or photosynthesis. Transcript levels in leaves were determined by microarray, where dozens of cold associated transcripts were quantitatively characterized, and levels of several potential key contributors (e.g., the dehydrin COR47 and GADb) to cold tolerance were confirmed by qRT-PCR. Cold responses are placed within the existing knowledge base of low temperature-induced changes in plants, allowing an evaluation of the uniqueness or generality of Fragaria responses in photosynthetic tissues. Overall, the cold response characteristics of ‘Korona’ are consistent with a moderately cold tolerant plant.
机译:为了评估草莓冷暴露过程中的潜在代谢过程和调控机制,将综合的“组学”方法应用于草莓属(Fragaria×ananassa Duch)。 “科罗纳。”检查了根和叶组织对冷驯化过程的反应。将在18°C下生长的植物组织中的代谢产物,蛋白质和转录本的水平与冷(2°C)暴露1-10天后的水平进行了比较。对叶和根进行基于GC / TOF-MS的代谢物谱分析时,发现了约160种化合物,这些化合物主要包含结构注释的一级和二级代谢物。总体而言,“ Korona”显示出适度的保护性代谢产物,例如氨基酸(天冬氨酸,亮氨酸,异亮氨酸和缬氨酸),戊糖,磷酸化和非磷酸化己糖以及棉子糖途径的不同化合物(半乳糖醇和棉子糖)增加。在根和叶中观察到明显的反应。通过2DE蛋白质组学,在叶片中共观察到845个斑点。 4.6%因感冒而明显改变。鉴定出二十一种蛋白质,其中许多与一般代谢或光合作用有关。通过微阵列测定叶片中的转录物水平,其中定量鉴定了数十个冷相关转录物,并通过qRT-PCR证实了对寒冷耐受性的几种潜在关键贡献者(例如脱水蛋白COR47和GADb)的水平。冷反应置于低温诱导的植物变化的现有知识库中,从而可以评估光合组织中草莓反应的独特性或普遍性。总体而言,“科罗纳”的寒冷反应特征与中等耐寒性植物相一致。

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