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首页> 外文期刊>Phytochemical Analysis >GC-MS Analysis of Headspace and Liquid Extracts for Metabolomic Differentiation of Citrus Huanglongbing and Zinc Deficiency in Leaves of 'Valencia' Sweet Orange from Commercial Groves
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GC-MS Analysis of Headspace and Liquid Extracts for Metabolomic Differentiation of Citrus Huanglongbing and Zinc Deficiency in Leaves of 'Valencia' Sweet Orange from Commercial Groves

机译:GC-MS分析顶空和液体提取物对柑橘“黄龙冰”的代谢组学分化和商品林“巴伦西亚”甜橙叶片中的锌缺乏

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Introduction - Citrus Huanglongbing (HLB) is considered the most destructive citrus disease worldwide. Symptoms-based detection of HLB is difficult due to similarities with zinc deficiency.Objective - To find metabolic differences between leaves from HLB-infected, zinc-deficient, and healthy 'Valencia' orange trees by using GC-MS based metabolomics.Methodology - Analysis based on GC-MS methods for untargeted metabolite analysis of citrus leaves was developed and optimized. Sample extracts from healthy, zinc deficient, or HLB-infected sweet orange leaves were submitted to headspace solid phase micro-extraction (SPME) and derivatization treatments prior to GC-MS analysis.Results - Principal components analysis achieved correct classification of all the derivatized liquid extracts. Analysis of variance revealed 6 possible biomarkers for HLB, of which 5 were identified as proline, beta-elemene, (-)trans- caryophyllene, and alpha-humulene. Significant (P < 0.05) differences in oxo-butanedioic acid, arabitol, and neo-inositol were exclusively detected in samples from plants with zinc deficiency. Levels of isocaryophyllen, alpha-selinene, beta-selinene, and fructose were significantly (P < 0.05) different in healthy leaves only.Conclusion - Results suggest the potential of using identified HLB biomarkers for rapid differentiation of HLB from zinc deficiency. Copyright (C) 2010 John Wiley & Sons, Ltd.
机译:简介-柑橘黄龙病(HLB)被认为是全球最具破坏力的柑橘病。由于与锌缺乏症的相似性,基于症状的HLB检测很困难目的-使用基于GC-MS的代谢组学方法,从HLB感染,缺锌和健康的'Valencia'橙树中找出叶片之间的代谢差异基于GC-MS的柑橘叶非目标代谢物分析方法得到了开发和优化。健康,缺锌或HLB感染的甜橙叶的样品提取物在GC-MS分析之前先经过顶空固相微萃取(SPME)和衍生化处理。结果-主成分分析实现了对所有衍生液体的正确分类提取物。方差分析显示了6种可能的HLB生物标志物,其中5种被鉴定为脯氨酸,β-榄香烯,(-)反式-石竹烯和α-hu草烯。仅在缺锌植物的样品中检测到氧丁酸,阿糖醇和新肌醇的显着差异(P <0.05)。结论:结果表明,使用已鉴定的HLB生物标记物可以快速区分HLB和锌缺乏症,具有潜力(P <0.05)。版权所有(C)2010 John Wiley&Sons,Ltd.

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