宜原原, 罗云, 阮梅林, 雷敏. 超声萃取-气相色谱法测定拟南芥种子中脂肪酸含量[J]. 分析测试技术与仪器, 2023, 29(4): 339-346. DOI: 10.16495/j.1006-3757.2023.04.001
引用本文: 宜原原, 罗云, 阮梅林, 雷敏. 超声萃取-气相色谱法测定拟南芥种子中脂肪酸含量[J]. 分析测试技术与仪器, 2023, 29(4): 339-346. DOI: 10.16495/j.1006-3757.2023.04.001
YI Yuanyuan, LUO Yun, RUAN Meilin, LEI Min. Determination of Fatty Acids in Arabidopsis Seeds by Ultrasonic Extraction Gas Chromatography[J]. Analysis and Testing Technology and Instruments, 2023, 29(4): 339-346. DOI: 10.16495/j.1006-3757.2023.04.001
Citation: YI Yuanyuan, LUO Yun, RUAN Meilin, LEI Min. Determination of Fatty Acids in Arabidopsis Seeds by Ultrasonic Extraction Gas Chromatography[J]. Analysis and Testing Technology and Instruments, 2023, 29(4): 339-346. DOI: 10.16495/j.1006-3757.2023.04.001

超声萃取-气相色谱法测定拟南芥种子中脂肪酸含量

Determination of Fatty Acids in Arabidopsis Seeds by Ultrasonic Extraction Gas Chromatography

  • 摘要: 建立了拟南芥种子中脂肪酸含量的超声萃取-气相色谱检测方法. 研究探讨了超声时间、加热温度、超声功率、静置萃取时间、萃取剂种类等试验条件对拟南芥种子中脂肪酸含量检测的影响,优化了样品前处理条件及气相色谱检测条件. 结果表明,最优的样品处理条件为:甲酯化超声加热温度90 ℃,超声功率400 W,时间30 min,萃取剂为正己烷,加入萃取剂后4 000 r/min离心5 min. 在最优条件下,脂肪酸分离效果和标准曲线线性关系良好,检出限(LOD)为2.9~21.5 mg/kg,定量限(LOQ)为14.5~94.0 mg/kg,精密度为0.5%~7.9%. 方法所需样品量少,操作简单快速,准确性高,对于部分油料作物如油菜籽、花生、大豆中脂肪酸含量的检测同样适用.

     

    Abstract: A new method was developed for the determination of fatty acids in Arabidopsis seeds by ultrasonic extraction gas chromatography. The effects of experimental conditions such as ultrasonic time, heating temperature, ultrasonic power, static extraction time and type of extractants on the determination of fatty acids in Arabidopsis seeds were investigated in detail. The sample pretreatment conditions and the detection conditions of gas chromatography were optimized. The results showed that the optimal sample treatment conditions were as follows: methyl esterification ultrasonic heating temperature of 90 ℃, ultrasonic power of 400 W for 30 min, extractant of n-hexane, and centrifugation at 4 000 r/min for 5 min after the addition of extractant. Under the optimal conditions, the fatty acids had good separation effect and linearity of the standard linear curve. The limit of detection (LOD) was 2.9~21.5 mg/kg, the limit of quantitation (LOQ) was 14.5~94.0 mg/kg, and the precision was 0.5%~7.9%. The method requires less sample amount, is simple, rapid and accurate and is also suitable for the determination of fatty acids in some oil-bearing crops such as Rapeseed, Peanut and Soybean.

     

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