首页> 外文期刊>Plant and Cell Physiology >Arabidopsis thaliana Mutants Lacking ADP-Glucose Pyrophosphorylase Accumulate Starch and Wild-type ADP-Glucose Content: Furthern Evidence for the Occurrence of Important Sources, other than ADP-Glucose Pyrophosphorylase, of ADP-Glucose Linked to Leafn Starch Biosynthesis
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Arabidopsis thaliana Mutants Lacking ADP-Glucose Pyrophosphorylase Accumulate Starch and Wild-type ADP-Glucose Content: Furthern Evidence for the Occurrence of Important Sources, other than ADP-Glucose Pyrophosphorylase, of ADP-Glucose Linked to Leafn Starch Biosynthesis

机译:缺乏ADP-葡萄糖焦磷酸化酶的拟南芥突变体会积累淀粉和野生型ADP-葡萄糖含量:进一步证据表明,与叶淀粉淀粉生物合成相关的ADP-葡萄糖还存在除ADP-葡萄糖焦磷酸化酶以外的重要来源。

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It is widely considered that ADP-glucose pyrophosphorylase (AGP) is the sole source of ADP-glucose linked to bacterial glycogen and plant starch biosynthesis. Genetic evidence that bacterial glycogen biosynthesis occurs solely by the AGP pathway has been obtained with glgC− AGP mutants. However, recent studies have shown that (i) these mutants can accumulate high levels of ADP-glucose and glycogen, and (ii) there are sources other than GlgC, of ADP-glucose linked to glycogen biosynthesis. In Arabidopsis, evidence showing that starch biosynthesis occurs solely by the AGP pathway has been obtained with the starchless adg1-1 and aps1 AGP mutants. However, mounting evidence has been compiled previewing the occurrence of more than one important ADP-glucose source in plants. In attempting to solve this 20-year-old controversy, in this work we carried out a judicious characterization of both adg1-1 and aps1. Both mutants accumulated wild-type (WT) ADP-glucose and approximately 2% of WT starch, as further confirmed by confocal fluorescence microscopic observation of iodine-stained leaves and of leaves expressing granule-bound starch synthase fused with GFP. Introduction of the sex1 mutation affecting starch breakdown into adg1-1 and aps1 increased the starch content to 8–10% of the WT starch. Furthermore, aps1 leaves exposed to microbial volatiles for 10 h accumulated approximately 60% of the WT starch. aps1 plants expressing the bacterial ADP-glucose hydrolase EcASPP in the plastid accumulated normal ADP-glucose and reduced starch when compared with aps1 plants, whereas aps1 plants expressing EcASPP in the cytosol showed reduced ADP-glucose and starch. Moreover, aps1 plants expressing bacterial AGP in the plastid accumulated WT starch and ADP-glucose. The overall data show that (i) there occur important source(s), other than AGP, of ADP-glucose linked to starch biosynthesis, and (ii) AGP is a major determinant of starch accumulation but not of intracellular ADP-glucose content in Arabidopsis.
机译:人们普遍认为ADP-葡萄糖焦磷酸化酶(AGP)是与细菌糖原和植物淀粉生物合成相关的ADP-葡萄糖的唯一来源。 glgC - AGP突变体已获得细菌糖原生物合成仅通过AGP途径发生的遗传证据。然而,最近的研究表明(i)这些突变体可以积累高水平的ADP-葡萄糖和糖原,以及(ii)除了GlgC以外,还有其他与糖原生物合成相关的来源。在拟南芥中,无淀粉的adg1-1和aps1 AGP突变体获得了仅通过AGP途径发生淀粉生物合成的证据。但是,已经收集了越来越多的证据,以预览植物中不止一种重要的ADP-葡萄糖来源的发生。为了解决这个已有20年历史的争议,在这项工作中,我们对adg1-1和aps1进行了明智的表征。这两个突变体均积累了野生型(WT)ADP葡萄糖和大约2%的WT淀粉,这是通过共聚焦荧光显微镜观察的,将碘染色的叶子和表达与GFP融合的颗粒结合淀粉合酶的叶子进一步共聚焦。将影响淀粉分解的sex1突变引入adg1-1和aps1中可使淀粉含量增加到WT淀粉的8-10%。此外,暴露于微生物挥发物10小时的aps1叶片累积了约60%的WT淀粉。与aps1植物相比,在质体中表达细菌ADP-葡萄糖水解酶EcASPP的aps1植物积累正常的ADP-葡萄糖和减少的淀粉,而在胞质溶胶中表达EcASPP的aps1植物显示减少的ADP-葡萄糖和淀粉。此外,在质体中表达细菌AGP的aps1植物积累了WT淀粉和ADP-葡萄糖。总体数据显示:(i)除了淀粉酶(AGP)以外,还存在与淀粉生物合成有关的重要来源(AGP),并且(ii)AGP是淀粉积累的主要决定因素,而不是淀粉中细胞内ADP葡萄糖含量的决定因素。拟南芥。

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