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A sensitive method for confocal fluorescence microscopic visualization of starch granules in iodine stained samples.

机译:共聚焦荧光显微镜观察碘染色样品中淀粉颗粒的灵敏方法。

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摘要

Synthesized by glycogen synthase and starch synthases (SS) using ADP-glucose as the sugar donor molecule, glycogen and starch accumulate as predominant storage carbohydrates in most bacteria and plants, respectively. We have recently shown that the so-called "starch-less" Arabidopsis thaliana adg1-1 and aps1 mutants impaired in ADP-glucose pyrophosphorylase do indeed accumulate low starch content in normal growth conditions, and relatively high starch content when plants were cultured in the presence of microbial volatiles. Our results were strongly supported by data obtained using a highly sensitive method for confocal fluorescence microscopic visualization of iodine stained starch granules. Using Arabidopsis leaves from WT plants, aps1 plants, ss3/ss4 plants lacking both class III and class IV SS, gbss plants lacking the granule-bound SS, and sus1/sus2/sus3/sus4 plants lacking four genes that code for proteins with sucrose synthase activity, in this work we precisely describe the method for preparation of plant samples for starch microscopic examination. Furthermore, we show that this method can be used to visualize glycogen in bacteria, and pure starch granules, amylose and amylopectin.
机译:由糖原合酶和淀粉合酶(SS)合成,使用ADP-葡萄糖作为糖供体分子,糖原和淀粉分别在大多数细菌和植物中积累为主要的碳水化合物。我们最近发现,在正常生长条件下,ADP-葡萄糖焦磷酸化酶受损的所谓“无淀粉”拟南芥adg1-1和aps1突变体确实积聚了较低的淀粉含量,而当植物在玉米中培养时,淀粉含量却相对较高。微生物挥发物的存在。我们的结果得到了使用高灵敏度方法对碘染色的淀粉颗粒进行共聚焦荧光显微镜观察得到的数据的有力支持。使用WT植物,aps1植物,ss3 / ss4植物(既缺乏III类和IV类SS),缺乏颗粒结合SS的gbss植物和缺乏四个编码蔗糖蛋白的基因的sus1 / sus2 / sus3 / sus4植物的拟南芥叶合酶活性,在这项工作中,我们精确地描述了用于淀粉显微镜检查的植物样品的制备方法。此外,我们表明,该方法可用于可视化细菌,纯淀粉颗粒,直链淀粉和支链淀粉中的糖原。

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