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拟南芥β-淀粉酶8的RNA干扰可防止冷激时麦芽糖积累,并增加PSII光化学效率对冻害胁迫的敏感性。

RNA interference of Arabidopsis beta-amylase8 prevents maltose accumulation upon cold shock and increases sensitivity of PSII photochemical efficiency to freezing stress.

作者信息

Kaplan Fatma, Guy Charles L

机构信息

Plant Molecular and Cellular Biology Program, Department of Environmental Horticulture, Institute of Food and Agricultural Sciences, University of Florida, Gainesville, 32611-0675, USA.

出版信息

Plant J. 2005 Dec;44(5):730-43. doi: 10.1111/j.1365-313X.2005.02565.x.

Abstract

It has been suggested that beta-amylase (BMY) induction during temperature stress in Arabidopsis could lead to starch-dependent maltose accumulation, and that maltose may contribute to protection of the electron transport chain and proteins in the chloroplast stroma during acute stress. A time-course transcript profiling analysis for cold shock at 4 degrees C revealed that BMY8 (At4g17090) was induced specifically in response to cold shock, while major induction was not observed for any of the other eight beta-amylases. A parallel metabolite-profiling analysis revealed a robust transient maltose accumulation during cold shock. BMY8 RNAi lines with lower BMY8 expression exhibited a starch-excess phenotype, and a dramatic decrease in maltose accumulation during a 6-h cold shock at 4 degrees C. The decreased maltose content was also accompanied by decreased glucose, fructose and sucrose content in the BMY8 RNAi plants, consistent with the roles of beta-amylase and maltose in transitory starch metabolism. BMY8 RNAi lines with reduced soluble sugar content exhibited diminished chlorophyll fluorescence as F(v)/F(m) ratio compared with wild type, suggesting that PSII photochemical efficiency was more sensitive to freezing stress. Together, carbohydrate analysis and freezing stress results of BMY8 RNAi lines indicate that increased maltose content, by itself or together through a maltose-dependent increase in other soluble sugars, contributes to the protection of the photosynthetic electron transport chain during freezing stress.

摘要

有人提出,拟南芥在温度胁迫期间β-淀粉酶(BMY)的诱导可能导致淀粉依赖性麦芽糖积累,并且麦芽糖可能有助于在急性胁迫期间保护叶绿体基质中的电子传递链和蛋白质。对4℃冷激的时间进程转录谱分析表明,BMY8(At4g17090)是特异性响应冷激而被诱导的,而其他八种β-淀粉酶均未观察到主要诱导现象。平行的代谢物谱分析表明,冷激期间麦芽糖有强烈的瞬时积累。BMY8表达较低的BMY8 RNAi株系表现出淀粉过量表型,并且在4℃下6小时冷激期间麦芽糖积累显著减少。BMY8 RNAi植物中麦芽糖含量的降低还伴随着葡萄糖、果糖和蔗糖含量的降低,这与β-淀粉酶和麦芽糖在暂态淀粉代谢中的作用一致。与野生型相比,可溶性糖含量降低的BMY8 RNAi株系的叶绿素荧光F(v)/F(m)比值降低,表明PSII光化学效率对冷冻胁迫更敏感。总之,BMY8 RNAi株系的碳水化合物分析和冷冻胁迫结果表明,增加的麦芽糖含量本身或通过麦芽糖依赖性增加其他可溶性糖,有助于在冷冻胁迫期间保护光合电子传递链。

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