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代谢组学分析揭示了二倍体模式种 Fragaria vesca(林地草莓)中新颖的多层次冷响应。

Metabolite profiling reveals novel multi-level cold responses in the diploid model Fragaria vesca (woodland strawberry).

机构信息

Department of Biology, Norwegian University of Science and Technology, 7491 Trondheim, Norway.

出版信息

Phytochemistry. 2012 May;77:99-109. doi: 10.1016/j.phytochem.2012.01.024. Epub 2012 Feb 25.

DOI:10.1016/j.phytochem.2012.01.024
PMID:22370221
Abstract

Winter freezing damage is a crucial factor in overwintering crops such as the octoploid strawberry (Fragaria × ananassa Duch.) when grown in a perennial cultivation system. Our study aimed at assessing metabolic processes and regulatory mechanisms in the close-related diploid model woodland strawberry (Fragaria vescaL.) during a 10-days cold acclimation experiment. Based on gas chromatography/time-of-flight-mass spectrometry (GC/TOF-MS) metabolite profiling of three F. vesca genotypes, clear distinctions could be made between leaves and non-photosynthesizing roots, underscoring the evolvement of organ-dependent cold acclimation strategies. Carbohydrate and amino acid metabolism, photosynthetic acclimation, and antioxidant and detoxification systems (ascorbate pathway) were strongly affected. Metabolic changes in F. vesca included the strong modulation of central metabolism, and induction of osmotically-active sugars (fructose, glucose), amino acids (aspartic acid), and amines (putrescine). In contrast, a distinct impact on the amino acid proline, known to be cold-induced in other plant systems, was conspicuously absent. Levels of galactinol and raffinose, key metabolites of the cold-inducible raffinose pathway, were drastically enhanced in both leaves and roots throughout the cold acclimation period of 10 days. Furthermore, initial freezing tests and multifaceted GC/TOF-MS data processing (Venn diagrams, independent component analysis, hierarchical clustering) showed that changes in metabolite pools of cold-acclimated F. vesca were clearly influenced by genotype.

摘要

冬季冻害是多年生栽培体系中八倍体草莓( Fragaria × ananassa Duch.)等越冬作物的一个关键因素。本研究旨在评估在为期 10 天的低温驯化实验中,亲缘关系密切的二倍体模式林地草莓( Fragaria vescaL.)的代谢过程和调控机制。基于三种 F. vesca 基因型的气相色谱/飞行时间质谱( GC/TOF-MS )代谢物图谱分析,可以清楚地区分叶片和非光合作用根系之间的差异,这突出了器官依赖性低温驯化策略的进化。碳水化合物和氨基酸代谢、光合作用适应以及抗氧化和解毒系统(抗坏血酸途径)受到强烈影响。 F. vesca 的代谢变化包括中心代谢的强烈调节,以及渗透活性糖(果糖、葡萄糖)、氨基酸(天冬氨酸)和胺(腐胺)的诱导。相比之下,在其他植物系统中已知诱导低温的氨基酸脯氨酸的明显缺失。在整个 10 天的低温驯化期间,两种叶片和根系中的半乳糖醇和棉子糖水平,冷诱导 raffinose 途径的关键代谢物,均大幅增加。此外,初步的冷冻测试和多维 GC/TOF-MS 数据处理( Venn 图、独立成分分析、层次聚类)表明,低温驯化 F. vesca 代谢物库的变化明显受基因型影响。

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