Comparing and integrating TMT‐SPS‐MS3 and label‐free quantitative approaches for proteomics scrutiny in recalcitrant Mango (Mangifera indica L.) peel tissue during postharvest period

采后 芒果 蛋白质组学 蛋白质组 生物 成熟 定量蛋白质组学 分馏 植物 芳香 食品科学 园艺 生物化学 化学 色谱法 基因
作者
Mirna V. Bautista‐Valle,Carolina Camacho-Vázquez,José M. Elizalde‐Contreras,Juan L. Monribot‐Villanueva,Abraham Vidal‐Limon,Esaú Bojórquez‐Velázquez,Jesús Alejandro Zamora‐Briseño,Jesús V. Jorrín–Novo,Eliel Ruíz-May
出处
期刊:Proteomics [Wiley]
卷期号:24 (5): e2300239-e2300239 被引量:6
标识
DOI:10.1002/pmic.202300239
摘要

Despite substantial advances in the use of proteomic technologies, their widespread application in fruit tissues of non-model and recalcitrant species remains limited. This hampers the understanding of critical molecular events during the postharvest period of fleshy tropical fruits. Therefore, we evaluated label-free quantitation (LFQ) and TMT-SPS-MS3 (TMT) approaches to analyse changes in the protein profile of mango peels during postharvest period. We compared two extraction methods (phenol and chloroform/methanol) and two peptide fractionation schemes (SCX and HPRP). We accurately identified 3065 proteins, of which, 1492 were differentially accumulated over at 6 days after harvesting (DAH). Both LFQ and TMT approaches share 210 differential proteins including cell wall proteins associated with fruit softening, as well as aroma and flavour-related proteins, which were increased during postharvest period. The phenolic protein extraction and the high-pH reverse-phase peptide fractionation was the most effective pipeline for relative quantification. Nevertheless, the information provided by the other tested strategies was significantly complementary. Besides, LFQ spectra allowed us to track down intact N-glycopeptides corroborating N-glycosylations on the surface of a desiccation-related protein. This work represents the largest proteomic comparison of mango peels during postharvest period made so far, shedding light on the molecular foundation of edible fruit during ripening.
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