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Metabolite changes in conifer buds and needles during forced bud break in Norway spruce (Picea abies) and European silver fir (Abies alba)

机译:挪威云杉(Picea abies)和欧洲白枞(Abies alba)强迫断芽期间,针叶树芽和针叶中的代谢物变化

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摘要

Environmental changes such as early spring and warm spells induce bud burst and photosynthetic processes in cold-acclimated coniferous trees and consequently, cellular metabolism in overwintering needles and buds. The purpose of the study was to examine metabolism in conifers under forced deacclimation (artificially induced spring) by exposing shoots of Picea abies (boreal species) and Abies alba (temperate species) to a greenhouse environment (22°C, 16/8 h D/N cycle) over a nine week period. Each week, we scored bud opening and collected samples for GC/MS–based metabolite profiling. We detected a total of 169 assigned metabolites and 80 identified metabolites, comprising compounds such as mono- and disaccharides, Krebs cycle acids, amino acids, polyols, phenolics and phosphorylated structures. Untargeted multivariate statistical analysis based on PCA and cluster analysis segregated samples by species, tissue type, and stage of tissue deacclimations. Similar patterns of metabolic regulation in both species were observed in buds (amino acids, Krebs cycle acids) and needles (hexoses, pentoses, and Krebs cycle acids). Based on correlation of bud opening score with compound levels, distinct metabolites could be associated with bud and shoot development, including amino acids, sugars and acids with known osmolyte function, and secondary metabolites. This study has shed light on how elevated temperature affects metabolism in buds and needles of conifer species during the deacclimation phase, and contributes to the discussion about how phenological characters in conifers may respond to future global warming.
机译:环境变化(例如早春和温暖的季节)会在冷适应的针叶树中诱发芽破裂和光合作用,从而导致越冬的针叶和芽中发生细胞代谢。这项研究的目的是通过将Picea abies(北方物种)和Abies alba(温带物种)的芽暴露于温室环境(22°C,16/8 h D)来检查在强迫去适应(人工诱导的春季)下的针叶树中的代谢/ N个周期)。每周,我们对芽开放进行评分,并收集基于GC / MS的代谢物谱图样本。我们检测到总共169种指定的代谢产物和80种已鉴定的代谢产物,包括单糖和双糖,克雷布斯循环酸,氨基酸,多元醇,酚类和磷酸化结构。基于PCA的无目标多变量统计分析和聚类分析按物种,组织类型和组织去适应的阶段将样本分离。在芽(氨基酸,克雷布斯循环酸)和针(己糖,戊糖和克雷布斯循环酸)中观察到两种物种的代谢调节模式相似。基于芽开放分数与化合物水平的相关性,不同的代谢产物可能与芽和芽的发育相关,包括氨基酸,具有已知渗透压功能的糖和酸以及次生代谢产物。这项研究揭示了高温在去适应阶段如何影响针叶树种的芽和针叶的代谢,并有助于探讨针叶树的物候特性如何响应未来的全球变暖。

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