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蛋白质组学分析以了解 ABA 对猕猴桃伤栓化的刺激作用。

Proteomics analysis to understand the ABA stimulation of wound suberization in kiwifruit.

机构信息

Key Laboratory for Postharvest Handling Agro-Products of Ministry of Agriculture, Zhejiang Key Laboratory of AgroFood Processing, College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou 310058, People's Republic of China.

Key Laboratory for Postharvest Handling Agro-Products of Ministry of Agriculture, Zhejiang Key Laboratory of AgroFood Processing, College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou 310058, People's Republic of China.

出版信息

J Proteomics. 2018 Feb 20;173:42-51. doi: 10.1016/j.jprot.2017.11.018. Epub 2017 Nov 27.

Abstract

UNLABELLED

Quick suberin-based healing after wounding played a protective role for plant to prevent further damage. In this study, the stimulative effect of exogenous abscisic acid (ABA) on wound suberization in postharvest kiwifruit was evaluated through suberin staining with toluidine blue O as well as the determination of suberin phenolics and aliphatics in wound tissue. Furthermore, to reveal the regulatory involvement of ABA in wound suberization, comparative quantitative proteomics and transcriptomics analyses based on iTRAQ and qRT-PCR technique were performed. In proteomics levels, a total of 95 protein species consistently showed differential abundance between ABA and control, including 29 down-regulated and 66 up-regulated protein species. The Kyoto Encyclopedia of Genes and Genomes (KEGG) with protein-protein interaction analyses revealed that ABA mainly affected the antioxidant system, phenylpropanoid metabolism and lipid metabolism associated with wound suberization. Based on the data of proteomics analysis, the differential expressions of genes encoding 11 selected protein species were confirmed by qRT-PCR analyses. GSH-Px, MDHAR, SOD, APX, POD, PAL, CCR, PPO, CYP86B1, DGGT and KCS11 were likely to be the key enzymes that involved the response of ABA to stimulate wound suberization by mediating the antioxidant system, phenylpropanoid metabolism and lipid metabolism.

BIOLOGICAL SIGNIFICANCE

Kiwifruit is susceptible to physical injury causing postharvest deterioration during harvest, transportation and storage. Therefore, quick healing is important for maintaining the postharvest quality of injured fruit. This work elucidated the potential role of ABA and the proteomic mechanism of its regulation in wound suberization of postharvest kiwifruit.

摘要

未加标签

受伤后快速形成的蜡质层对植物起到了保护作用,防止进一步受损。在这项研究中,通过甲苯胺蓝 O 对伤口蜡质层进行染色以及测定伤口组织中的蜡质酚类和脂肪族化合物,评估了外源脱落酸(ABA)对采后猕猴桃伤口蜡质形成的刺激作用。此外,为了揭示 ABA 在伤口蜡质形成中的调控作用,采用 iTRAQ 和 qRT-PCR 技术进行了比较定量蛋白质组学和转录组学分析。在蛋白质组学水平上,共鉴定出 95 种蛋白质在 ABA 和对照之间表现出一致的丰度差异,包括 29 种下调和 66 种上调的蛋白质。京都基因与基因组百科全书(KEGG)的蛋白质-蛋白质相互作用分析表明,ABA 主要影响与伤口蜡质形成相关的抗氧化系统、苯丙烷代谢和脂质代谢。基于蛋白质组学分析的数据,通过 qRT-PCR 分析验证了 11 种选定蛋白质编码基因的差异表达。GSH-Px、MDHAR、SOD、APX、POD、PAL、CCR、PPO、CYP86B1、DGGT 和 KCS11 可能是参与 ABA 响应并通过调节抗氧化系统、苯丙烷代谢和脂质代谢来刺激伤口蜡质形成的关键酶。

生物学意义

猕猴桃在收获、运输和储存过程中容易受到物理损伤,导致采后劣变。因此,快速愈合对于保持受伤果实的采后品质非常重要。这项工作阐明了 ABA 的潜在作用及其在采后猕猴桃伤口蜡质形成中的调控蛋白质组学机制。

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