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Sugar-induced increases in trehalose 6-phosphate are correlated with redox activation of ADPglucose pyrophosphorylase and higher rates of starch synthesis in Arabidopsis thaliana

机译:糖诱导的海藻糖6-磷酸的增加与拟南芥中ADP葡萄糖焦磷酸化酶的氧化还原激活和淀粉合成速率更高相关

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pTre6P (trehalose 6-phosphate) is implicated in sugar-signalling pathways in plants, but its exact functions iin vivo/i are uncertain. One of the main obstacles to discovering these functions is the difficulty of measuring the amount of Tre6P in plant tissues. We have developed a highly specific assay, using liquid chromatography coupled to MS-Q3 (triple quadrupole MS), to measure Tre6P in the femto-picomole range. The Tre6P content of sucrose-starved iArabidopsis thaliana/i seedlings in axenic culture increased from 18 to 482 pmol·gsup?1/supFW (fresh weight) after adding sucrose. Leaves from soil-grown plants contained 67 pmol·gsup?1/supFW at the end of the night, which rose to 108 pmol·gsup?1/supFW after 4 h of illumination. Even greater changes in Tre6P content were seen after a 6 h extension of the dark period, and in the starchless mutant, ipgm/i. The intracellular concentration of Tre6P in wild-type leaves was estimated to range from 1 to 15 μM. It has recently been reported that the addition of Tre6P to isolated chloroplasts leads to redox activation of AGPase (ADPglucose pyrophosphorylase) [Kolbe, Tiessen, Schluepmann, Paul, Ulrich and Geigenberger (2005) Proc. Natl. Acad. Sci. U.S.A. b102/b, 11118–11123]. Using the new assay for Tre6P, we found that rising sugar levels in plants are accompanied by increases in the level of Tre6P, redox activation of AGPase and the stimulation of starch synthesis iin vivo/i. These results indicate that Tre6P acts as a signalling metabolite of sugar status in plants, and support the proposal that Tre6P mediates sucrose-induced changes in the rate of starch synthesis./p
机译:> Tre6P(6-海藻糖磷酸)与植物的糖信号传导途径有关,但其在体内的确切功能尚不确定。发现这些功能的主要障碍之一是难以测量植物组织中Tre6P的量。我们已经开发出了一种高度特异性的检测方法,它使用液相色谱与MS-Q3(三重四极杆MS)耦合,以测量Femto-Picomole范围内的Tre6P。添加蔗糖后,蔗糖饥饿的拟南芥幼苗的Tre6P含量从18增加到482 pmol·g ?1 FW(鲜重)。在深夜,来自土壤植物的叶子含有67 pmol·g ?1 FW,而在4天后,其叶子的FW上升至108 pmol·g ?1 FW。照度h。在黑暗期延长6小时后,在无淀粉突变体 pgm 中,Tre6P含量甚至出现了更大的变化。估计野生型叶片中Tre6P的细胞内浓度范围为1至15μM。最近有报道称,向分离的叶绿体中添加Tre6P导致AGP酶(ADP葡萄糖焦磷酸磷酸化酶)的氧化还原激活[Kolbe,Tiessen,Schluepmann,Paul,Ulrich和Geigenberger(2005)Proc.Natl.Acad.Sci.USA 90:5873-5877。 Natl。学院科学美国 102 ,11118-11123]。使用针对Tre6P的新测定法,我们发现植物中糖水平的上升伴随着Tre6P水平的增加,AGPase的氧化还原激活和体内淀粉合成的刺激。这些结果表明,Tre6P可作为植物糖状态的信号代谢产物,并支持Tre6P介导蔗糖诱导的淀粉合成速率变化的提议。

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