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iTRAQ 定量蛋白质组学分析揭示了萱草花衰老过程中的动态变化。

iTRAQ-based quantitative proteomic analysis reveals dynamic changes during daylily flower senescence.

机构信息

Floriculture Research and Development Center of Zhejiang Academy of Agricultural Sciences, Hangzhou, Zhejiang, China.

出版信息

Planta. 2018 Oct;248(4):859-873. doi: 10.1007/s00425-018-2943-5. Epub 2018 Jun 26.

Abstract

Sugar-related metabolic biological processes and metabolic pathways as well as invertase, protease, and ribosomal proteins may be critical regulators controlling the circadian rhythm and ephemeral properties of daylily flowers. Daylily is a familiar perennial flower. The daylily flower opens at dawn and withers away at night. Flower longevity in almost all daylily varieties from opening to fading is less than 24 h. In the past decades, the physiological changes and genetic responses to senescence in daylily flowers have been reported. However, the main metabolic pathways and biological processes involved in daylily flower senescence and the proteins involved in premature senility of daylily flowers are poorly understood. Herein, we identified differences between the proteomes of four developmental stages (s1-s4) of daylily flowers using iTRAQ-based quantitative proteomic methods. A total of 445 proteins (containing at least two unique peptides) were identified, and differentially expressed proteins (upregulation ≥ 1.5 or downregulation ≤ 0.67, P value ≤ 0.05) were detected between these stages in the following numbers: 58 (s2/s1), 59 (s3/s1), 31 (s3/s2), 64 (s4/s1), 52 (s4/s2), and 29 (s4/s3). Protein functions and classifications were analyzed based on GO, KEGG, and COG, and expressive hierarchical cluster analysis and functional enrichment analysis for differentially expressed proteins were carried out. A comparison of the late stages (s3 and s4) with the early stage (s1) revealed that the sugar (hexose, monosaccharide, and glucose) metabolic process GO category was the most enriched, and sugar (galactose, pentose, starch, and sucrose) metabolism pathways constituted the most enriched KEGG category. Finally, the potential research value of invertase, protease, and ribosomal proteins for revealing the mechanism underlying the circadian rhythm and ephemeral properties of daylily flowers are discussed. These data and analyses provide new insight into the senescence mechanism of daylily flowers.

摘要

糖相关代谢生物过程和代谢途径以及转化酶、蛋白酶和核糖体蛋白可能是控制萱草花昼夜节律和短暂特性的关键调节因子。萱草是一种常见的多年生花卉。萱草花在黎明时开放,夜间凋谢。几乎所有萱草品种从开放到凋谢的花的寿命都不到 24 小时。在过去的几十年里,已经报道了萱草花衰老过程中的生理变化和遗传反应。然而,萱草花衰老过程中涉及的主要代谢途径和生物学过程以及萱草花早衰涉及的蛋白质知之甚少。在此,我们使用 iTRAQ 定量蛋白质组学方法鉴定了萱草花四个发育阶段(s1-s4)的蛋白质组之间的差异。共鉴定到 445 种蛋白质(至少含有 2 种独特肽段),在以下数量的阶段之间检测到差异表达蛋白(上调≥1.5 或下调≤0.67,P 值≤0.05):s2/s1 为 58 个,s3/s1 为 59 个,s3/s2 为 31 个,s4/s1 为 64 个,s4/s2 为 52 个,s4/s3 为 29 个。根据 GO、KEGG 和 COG 对蛋白质功能和分类进行了分析,并对差异表达蛋白进行了表达层次聚类分析和功能富集分析。晚期(s3 和 s4)与早期(s1)的比较表明,糖(己糖、单糖和葡萄糖)代谢过程 GO 类别最丰富,糖(半乳糖、戊糖、淀粉和蔗糖)代谢途径构成最丰富的 KEGG 类别。最后,讨论了转化酶、蛋白酶和核糖体蛋白揭示萱草花昼夜节律和短暂特性机制的潜在研究价值。这些数据和分析为萱草花衰老机制提供了新的见解。

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