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A common HPLC-PDA method for amino acid analysis in insects and plants

机译:用于昆虫和植物中氨基酸分析的常用HPLC-PDA方法

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A common method for analysis of 17 amino acids from various insect species and plant parts was standardized using HPLC-PDA. Prior to hydrolysis, lyophilization of test samples was found indispensible to remove excess moisture, which interferes in hydrolysis and separation of amino acids. After the hydrolysis of plant and insect samples, 500 and 100 mu L of boiling HC1, respectively for reconstitution, and 20 mu L of hydrolyzed samples used for derivatization, provided best results. Gradient profile of mobile phase and run time up to 65 mm were standardized to (i) overcome the problems related to eluting underivatized sample part, (ii) optimize the use of mobile phase and run time, and (iii) get better separation of different amino acids. Analysis of Chilo partellus larvae reared on sorghum seedling powder based artificial diet indicated that arginine and histidine quantities were on par in both samples. However, methionine was higher, and leucine, isoleucine, lysine, phenylalanine, threonine and valine were lower in sorghum seedlings than in C. partellus larvae, suggesting compensation of these amino acids by the insect through voracious feeding, as is being expected from artificial diet. This method was found highly sensitive, reproducible and useful for the analysis of amino acids for better understanding of insect-plant interactions.
机译:使用HPLC-PDA标准化了一种用于分析来自各种昆虫物种和植物部位的17种氨基酸的通用方法。在水解之前,发现冻干测试样品不可去除多余的水分,这会干扰氨基酸的水解和分离。将植物和昆虫样品水解后,分别用500和100μL沸腾HCl进行重构,以及将20μL水解后的样品用于衍生化,可提供最佳结果。流动相和运行时间长达65 mm的梯度曲线已标准化,以(i)克服与洗脱未衍生样品部分有关的问题,(ii)优化流动相和运行时间的使用,以及(iii)更好地分离各种氨基酸。对基于高粱幼苗粉的人工饮食饲养的智利lo虫幼虫的分析表明,两个样品中的精氨酸和组氨酸含量均相等。然而,高粱幼苗中的蛋氨酸含量较高,而亮氨酸,异亮氨酸,赖氨酸,苯丙氨酸,苏氨酸和缬氨酸的含量低于粉虱(C. partellus)幼虫,这表明昆虫通过贪食对昆虫的这些氨基酸进行了补偿,正如人工饮食所预期的那样。 。发现该方法高度灵敏,可重现,可用于氨基酸分析,以更好地了解昆虫与植物的相互作用。

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