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揭示猕猴桃采后冷藏过程中的代谢物和蛋白质变化

Unveiling Kiwifruit Metabolite and Protein Changes in the Course of Postharvest Cold Storage.

作者信息

Salzano Anna Maria, Renzone Giovanni, Sobolev Anatoly P, Carbone Virginia, Petriccione Milena, Capitani Donatella, Vitale Monica, Novi Gianfranco, Zambrano Nicola, Pasquariello Maria Silvia, Mannina Luisa, Scaloni Andrea

机构信息

Proteomics & Mass Spectrometry Laboratory, Istituto per il Sistema Produzione Animale In Ambiente Mediterraneo, National Research Council, Naples, Italy.

Magnetic Resonance Laboratory "Annalaura Segre", Institute of Chemical Methodologies, National Research Council, Monterotondo, Italy.

出版信息

Front Plant Sci. 2019 Feb 4;10:71. doi: 10.3389/fpls.2019.00071. eCollection 2019.

Abstract

cv. Hayward fruit is renowned for its micro- and macronutrients, which vary in their levels during berry physiological development and postharvest processing. In this context, we have recently described metabolic pathways/molecular effectors in fruit outer endocarp characterizing the different stages of berry physiological maturation. Here, we report on the kiwifruit postharvest phase through an integrated approach consisting of pomological analysis combined with NMR/LC-UV/ESI-IT-MS- and 2D-DIGE/nanoLC-ESI-LIT-MS/MS-based proteometabolomic measurements. Kiwifruit samples stored under conventional, cold-based postharvest conditions not involving the use of dedicated chemicals were sampled at four stages (from fruit harvest to pre-commercialization) and analyzed in comparison for pomological features, and outer endocarp metabolite and protein content. About 42 metabolites were quantified, together with corresponding proteomic changes. Proteomics showed that proteins associated with disease/defense, energy, protein destination/storage, cell structure and metabolism functions were affected at precise fruit postharvest times, providing a justification to corresponding pomological/metabolite content characteristics. Bioinformatic analysis of variably represented proteins revealed a central network of interacting species, modulating metabolite level variations during postharvest fruit storage. Kiwifruit allergens were also quantified, demonstrating in some cases their highest levels at the fruit pre-commercialization stage. By lining up kiwifruit postharvest processing to a proteometabolomic depiction, this study integrates previous observations on metabolite and protein content in postharvest berries treated with specific chemical additives, and provides a reference framework for further studies on the optimization of fruit storage before its commercialization.

摘要

海沃德猕猴桃以其微量和大量营养素而闻名,这些营养素在浆果生理发育和采后加工过程中的含量会有所不同。在此背景下,我们最近描述了果实外果皮中的代谢途径/分子效应器,其表征了浆果生理成熟的不同阶段。在此,我们通过一种综合方法报告了猕猴桃的采后阶段,该方法包括结合NMR/LC-UV/ESI-IT-MS以及基于二维差异凝胶电泳/纳升液相色谱-电喷雾电离线性离子阱质谱联用技术的蛋白质代谢组学测量的果树学分析。在常规的、基于冷藏的采后条件下(不使用专用化学品)储存的猕猴桃样品在四个阶段(从果实收获到预商业化)进行采样,并对其果树学特征、外果皮代谢物和蛋白质含量进行比较分析。共定量了约42种代谢物以及相应的蛋白质组变化。蛋白质组学表明,与疾病/防御、能量、蛋白质定位/储存、细胞结构和代谢功能相关的蛋白质在果实采后的特定时间受到影响,这为相应的果树学/代谢物含量特征提供了依据。对不同表达的蛋白质进行生物信息学分析揭示了一个相互作用物种的核心网络,该网络在采后果实储存期间调节代谢物水平的变化。还对猕猴桃过敏原进行了定量,在某些情况下表明其在果实预商业化阶段含量最高。通过将猕猴桃采后加工与蛋白质代谢组学描述相结合,本研究整合了先前对用特定化学添加剂处理的采后果实中代谢物和蛋白质含量的观察结果,并为进一步研究果实商业化前储存的优化提供了参考框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9237/6369206/e7a00aefa1c3/fpls-10-00071-g001.jpg

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