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首页> 外文期刊>Plant and cell physiology >Stress metabolism in green coffee beans (Coffea arabica L.): expression of dehydrins and accumulation of GABA during drying.
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Stress metabolism in green coffee beans (Coffea arabica L.): expression of dehydrins and accumulation of GABA during drying.

机译:生咖啡豆(Coffea arabica L.)中的应激代谢:脱水过程中脱水素的表达和GABA的积累。

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摘要

In order to produce tradeable standard green coffee, processed beans must be dried. The drying procedure affects the abundance of relevant aroma substances, e.g. carbohydrates. Using molecular tools, the corresponding metabolic basis is analyzed. A decrease in water potential of the still living coffee seeds induces massive drought stress responses. As a marker for these stress reactions, accumulation of a general stress metabolite, GABA ( gamma-aminobutyric acid), and associated gene expression of drought stress-associated dehydrins were monitored. The results of this study indicate that metabolism in drying coffee beans is quite complex since several events trigger accumulation of GABA. The first peak of GABA accumulation during drying is correlated with expression of isocitrate lyase and thus with ongoing germination processes in coffee seeds. Two subsequent peaks of GABA accumulation correspond to maxima of dehydrin gene expression and are thought to be induced directly by drought stress in the embryo and endosperm tissue, respectively. Apart from the significance for understanding basic seed physiology, metabolic changes in coffee seeds during processing provide valuable information for understanding the role and effect of the steps of green coffee processing on the quality of the resulting coffee
机译:为了生产可交易的标准生咖啡,必须将加工过的咖啡豆干燥。干燥程序会影响相关香气物质的含量,例如碳水化合物。使用分子工具分析相应的代谢基础。仍然活着的咖啡种子的水势下降导致大量干旱胁迫响应。作为这些应激反应的标记,监测了一般应激代谢物GABA(γ-氨基丁酸)的积累以及干旱胁迫相关脱水素的相关基因表达。这项研究的结果表明,由于一些事件触发了GABA的积累,因此干燥咖啡豆的新陈代谢非常复杂。干燥期间GABA积累的第一个峰与异柠檬酸裂合酶的表达相关,因此与咖啡种子中持续的发芽过程相关。 GABA积累的两个随后的峰值对应于脱水蛋白基因表达的最大值,并且被认为分别由胚胎和胚乳组织中的干旱胁迫直接诱导。除了理解基本种子生理的意义外,咖啡种子在加工过程中的代谢变化还为了解生咖啡加工步骤对所得咖啡质量的作用和影响提供了有价值的信息。

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