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Potassium acetate

乙酸钾

Company: Sigma-Aldrich
Catalog#: P1147
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Minimal Inhibitory Concentration (MIC) Assay for Acinetobacter baumannii
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Date:
2014-12-05
[Abstract]  Minimal inhibition concentration (MIC) is the lowest concentration of an antimicrobial agent that can inhibit the visible growth of a microorganism after overnight incubation. MIC determination is used as not only a diagnostic tool in treating bacterial infections for clinicians but also a research method in evaluating the efficacy of an antimicrobial. Multidrug resistance Acinetobacter baumannii (A. baumannii) has emerged in recent years. Accurate determination of resistance by MIC assay is important in coping with this superbug. Here we described a protocol for determining MIC for A. baumannii in hope of assisting researchers and physicians in confirming resistance of clinical isolates correctly. [摘要]  最小抑制浓度(MIC)是可以在过夜孵育后抑制微生物可见生长的抗微生物剂的最低浓度。 MIC测定不仅用作治疗临床医生的细菌感染的诊断工具,而且用作评价抗微生物剂的功效的研究方法。 近年来出现了多药耐药性鲍曼不动杆菌(Eminetobacter baumannii)(鲍曼不动杆菌)。 通过MIC测定的抗性的精确测定对于应对该超级细菌是重要的。 这里我们描述了用于确定 A的MIC的协议。 baumannii 希望协助研究人员和医生正确地确认临床分离株的耐药性。

Purification of Starch Granules from Arabidopsis Leaves and Determination of Granule-Bound Starch Synthase Activity
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Date:
2014-12-05
[Abstract]  Starch constitutes the most important carbon reserve in plants and is composed of branched amylopectin and linear amylose. The latter is synthesized exclusively by the Granule-Bound Starch Synthase (GBSS, EC 2.4.1.21). Here we report a readily reproducible, specific and highly sensitive protocol, which includes the isolation of intact starch granules from Arabidopsis thaliana leaves and the subsequent determination of GBSS activity. We have applied this method to study GBSS activity in diurnal cycles in vegetative growth and during the photoperiodic transition to flowering in Arabidopsis (Tenorio et al., 2003; Ortiz-Marchena et al., 2014). [摘要]  淀粉构成植物中最重要的碳储量,由支链支链淀粉和线性直链淀粉组成。 后者仅由颗粒结合的淀粉合酶(GBSS,EC 2.4.1.21)合成。 在这里我们报告一个容易重现,具体和高度敏感的协议,其中包括完整的淀粉颗粒从拟南芥叶中分离和随后的GBSS活动的确定。 我们已经应用这种方法来研究营养生长的日变化周期中和在拟南芥中的光周期过渡到开花期间的GBSS活性(Tenorio等人,2003; Ortiz-Marchena& em> et al。,2014)。

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