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玉米花粉经冷预处理和诱导雄核发育后的蛋白质组学和生化分析揭示了抗氧化酶的重要作用。

Proteomic and biochemical analysis of maize anthers after cold pretreatment and induction of androgenesis reveals an important role of anti-oxidative enzymes.

机构信息

Institute of Plant Genetics and Biotechnology, Slovak Academy of Sciences, Akademická 2, P. O. Box 39A, 95007 Nitra, Slovak Republic.

出版信息

J Proteomics. 2012 Mar 16;75(6):1886-94. doi: 10.1016/j.jprot.2011.12.033. Epub 2012 Jan 9.

DOI:10.1016/j.jprot.2011.12.033
PMID:22252011
Abstract

In stress conditions, microspores and young pollen grains can be switched from their normal pollen development toward an embryogenic pathway via a process called androgenesis. Androgenic embryos can produce completely homozygous, haploid or double-haploid plants. This study aimed to investigate changes in the abundance of protein species during cold pretreatment and subsequent cultivation of maize anthers on induction media using gel-based proteomics. Proteins upregulated on the third day of anther induction were identified and discussed here. Simultaneous microscopic observations revealed that the first division occurred in microspores within this period. Using 2-D electrophoresis combined with MALDI TOF/TOF MS/MS analysis 19 unique proteins were identified and classified into 8 functional groups. Proteins closely associated with metabolism, protein synthesis and cell structure were the most abundant ones. Importantly, ascorbate peroxidase, an enzyme decomposing hydrogen peroxide, was also upregulated. Isozyme analysis of peroxidases validated the proteomic data and showed increased peroxidase activities during androgenic induction. Further, the isozyme pattern of SOD revealed increased activity of the MnSOD, which could provide hydrogen peroxide as a substrate for in vivo peroxidase reactions (including ascorbate peroxidase). Together, these data reveal the role of enzymes controlling oxidative stress during induction of maize androgenesis.

摘要

在应激条件下,通过称为雄核发育的过程,小孢子和幼花粉粒可以从正常的花粉发育转向胚胎发生途径。雄性胚可以产生完全纯合的、单倍体或双单倍体植物。本研究旨在使用基于凝胶的蛋白质组学研究玉米花粉在冷预处理和随后在诱导培养基上培养期间蛋白质种类丰度的变化。本文鉴定并讨论了在花药诱导的第 3 天上调的蛋白质。同时的显微镜观察表明,在此期间小孢子中发生了第一次分裂。使用 2-D 电泳结合 MALDI TOF/TOF MS/MS 分析,鉴定了 19 种独特的蛋白质,并将其分类为 8 个功能组。与代谢、蛋白质合成和细胞结构密切相关的蛋白质是最丰富的。重要的是,还上调了分解过氧化氢的过氧化物酶——抗坏血酸过氧化物酶。过氧化物酶的同工酶分析验证了蛋白质组学数据,并显示在雄性发生诱导过程中过氧化物酶活性增加。此外,SOD 的同工酶模式显示 MnSOD 的活性增加,MnSOD 可以为体内过氧化物酶反应(包括抗坏血酸过氧化物酶)提供过氧化氢作为底物。总之,这些数据揭示了在玉米雄性发生诱导过程中控制氧化应激的酶的作用。

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