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A label-free differential quantitative mass spectrometry method for the characterization and identification of protein changes during citrus fruit development

机译:用于柑橘类水果发育过程中蛋白质变化的表征和鉴定的无标记差分定量质谱方法

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Background Citrus is one of the most important and widely grown commodity fruit crops. In this study a label-free LC-MS/MS based shot-gun proteomics approach was taken to explore three main stages of citrus fruit development. These approaches were used to identify and evaluate changes occurring in juice sac cells in various metabolic pathways affecting citrus fruit development and quality. Results Protein changes in citrus juice sac cells were identified and quantified using label-free shotgun methodologies. Two alternative methods, differential mass-spectrometry (dMS) and spectral counting (SC) were used to analyze protein changes occurring during earlier and late stages of fruit development. Both methods were compared in order to develop a proteomics workflow that could be used in a non-model plant lacking a sequenced genome. In order to resolve the bioinformatics limitations of EST databases from species that lack a full sequenced genome, we established iCitrus. iCitrus is a comprehensive sequence database created by merging three major sources of sequences (HarvEST:citrus, NCBI/citrus/unigenes, NCBI/citrus/proteins) and improving the annotation of existing unigenes. iCitrus provided a useful bioinformatics tool for the high-throughput identification of citrus proteins. We have identified approximately 1500 citrus proteins expressed in fruit juice sac cells and quantified the changes of their expression during fruit development. Our results showed that both dMS and SC provided significant information on protein changes, with dMS providing a higher accuracy. Conclusion Our data supports the notion of the complementary use of dMS and SC for label-free comparative proteomics, broadening the identification spectrum and strengthening the identification of trends in protein expression changes during the particular processes being compared.
机译:背景技术柑橘是最重要和广泛种植的商品水果作物之一。在这项研究中,采用了基于无标签LC-MS / MS的shot弹枪蛋白质组学方法,探索了柑橘类水果发育的三个主要阶段。这些方法用于识别和评估果汁囊细胞中各种代谢途径中发生的变化,这些变化会影响柑桔的发育和品质。结果使用无标记shot弹枪方法鉴定并定量了柑橘汁囊细胞中的蛋白质变化。两种替代方法分别是差分质谱(dMS)和光谱计数(SC),用于分析在果实发育的早期和晚期发生的蛋白质变化。比较了这两种方法,以开发蛋白质组学工作流程,该流程可用于缺乏测序基因组的非模型植物。为了解决缺少完整序列基因组物种的EST数据库的生物信息学局限性,我们建立了iCitrus。 iCitrus是一个综合的序列数据库,通过合并三个主要序列来源(HarvEST:柑橘,NCBI /柑橘/单基因,NCBI /柑橘/蛋白质)并改善现有单基因的注释而创建。 iCitrus为高通量鉴定柑橘蛋白提供了有用的生物信息学工具。我们已经鉴定出大约1500种在果汁囊细胞中表达的柑橘蛋白,并量化了它们在果实发育过程中表达的变化。我们的结果表明,dMS和SC均提供了有关蛋白质变化的重要信息,而dMS提供了更高的准确性。结论我们的数据支持将dMS和SC互补用于无标记比较蛋白质组学的观点,从而扩大了鉴定范围,并加强了在所比较的特定过程中蛋白质表达变化趋势的鉴定。

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