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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Rapid analysis of organic acids in plant extracts by capillary electrophoresis with indirect UV detection - Directed metabolic analyses during metal stress
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Rapid analysis of organic acids in plant extracts by capillary electrophoresis with indirect UV detection - Directed metabolic analyses during metal stress

机译:间接紫外检测通过毛细管电泳快速分析植物提取物中的有机酸-金属胁迫期间的定向代谢分析

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A fast, reliable capillary zone electrophoresis (CZE) method with indirect UV detection was optimized and validated to determine the main organic acids contained in plants. Citric, malic, succinic, oxalic, formic, fumaric, acetic acids, and phosphate were quantified. A rapid separation while keeping a good resolution was obtained by optimizing capillary length, separation voltage, electrolyte composition, and pH. Analyses were performed in a 30 cm. uncoated fused-silica capillary (length to the detector window) in the co-electroosmotic mode with reversed electroosmotic flow and anodic detection using a -30 kV separation voltage. The pH 9.0 electrolyte contained 3 x 10(-4) mol/L tetradecyltrimethylammonium and 10(-2) mol/L trimellitate. Separation with baseline return was achieved in 100 s. Linearity, detection limits, repeatability, reproducibility, and recoveries were evaluated. Mean precision values of 0.2 and 3.4% for migration times and time-corrected peak areas, respectively, enabled accurate identification and quantification whether in standard solutions or in samples. Such performances were perfectly adapted to high-throughput routine determinations of organic acids in research or industry. Organic acids were assayed in different plant tissues and cells, including sycamore, arabidopsis, buttercup, and pea. Citrate and malate were the most abundant in all plants tested with concentrations reaching 18.9 and 22.3 mu mol/g fresh matter, respectively. Cadmium effect on pea leaves metabolism was also assessed. (c) 2006 Elsevier B.V. All rights reserved.
机译:优化并验证了一种快速,可靠的毛细管区带电泳(CZE)方法,该方法具有间接紫外线检测功能,可确定植物中所含的主要有机酸。对柠檬酸,苹果酸,琥珀酸,草酸,甲酸,富马酸,乙酸和磷酸盐进行了定量。通过优化毛细管长度,分离电压,电解质组成和pH,可以实现快速分离,同时保持良好的分离度。在30厘米内进行分析。在共电渗模式下使用反向电渗流和使用-30 kV分离电压进行阳极检测时,未涂覆的熔融石英毛细管(至检测器窗口的长度)。 pH 9.0电解质包含3 x 10(-4)mol / L十四烷基三甲基铵和10(-2)mol / L偏苯三酸酯。在100 s内实现了基线返回的分离。评估了线性,检测限,可重复性,可重复性和回收率。迁移时间和经时间校正的峰面积的平均精确度分别为0.2%和3.4%,无论是在标准溶液中还是在样品中,都可以进行准确的鉴定和定量。这样的性能非常适合于研究或工业中有机酸的高通量常规测定。在包括无花果,拟南芥,毛cup和豌豆在内的不同植物组织和细胞中测定了有机酸。在所有测试的植物中,柠檬酸和苹果酸含量最高,新鲜物质的浓度分别达到18.9和22.3μmol/ g。还评估了镉对豌豆叶代谢的影响。 (c)2006 Elsevier B.V.保留所有权利。

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