Czarna Malgorzata, Kolodziejczak Marta, Janska Hanna
Department of Cellular Molecular Biology, Faculty of Biotechnology, University of Wroclaw, F. Joliot-Curie 14A, Wroclaw 50-383, Poland.
Proteomes. 2016 Jun 21;4(2):19. doi: 10.3390/proteomes4020019.
Seed germination is considered to be one of the most critical phases in the plant life cycle, establishing the next generation of a plant species. It is an energy-demanding process that requires functioning mitochondria. One of the earliest events of seed germination is progressive development of structurally simple and metabolically quiescent promitochondria into fully active and cristae-containing mitochondria, known as mitochondrial biogenesis. This is a complex and tightly regulated process, which is accompanied by sequential and dynamic gene expression, protein synthesis, and post-translational modifications. The aim of this review is to give a comprehensive summary of seed mitochondrial proteome studies during germination of various plant model organisms. We describe different gel-based and gel-free proteomic approaches used to characterize mitochondrial proteomes of germinating seeds as well as challenges and limitations of these proteomic studies. Furthermore, the dynamic changes in the abundance of the mitochondrial proteomes of germinating seeds are illustrated, highlighting numerous mitochondrial proteins involved in respiration, tricarboxycylic acid (TCA) cycle, metabolism, import, and stress response as potentially important for seed germination. We then review seed mitochondrial protein carbonylation, phosphorylation, and -nitrosylation as well as discuss the possible link between these post-translational modifications (PTMs) and the regulation of seed germination.
种子萌发被认为是植物生命周期中最关键的阶段之一,它决定了植物物种的下一代。这是一个需要能量的过程,需要正常运作的线粒体。种子萌发最早发生的事件之一是结构简单且代谢静止的前线粒体逐渐发育成完全活跃且含有嵴的线粒体,即线粒体生物发生。这是一个复杂且受到严格调控的过程,伴随着连续且动态的基因表达、蛋白质合成和翻译后修饰。本综述的目的是全面总结各种植物模式生物种子萌发过程中线粒体蛋白质组的研究。我们描述了用于表征萌发种子线粒体蛋白质组的不同基于凝胶和非凝胶的蛋白质组学方法,以及这些蛋白质组学研究的挑战和局限性。此外,还阐述了萌发种子线粒体蛋白质组丰度的动态变化,突出了许多参与呼吸作用、三羧酸(TCA)循环、代谢、导入和应激反应的线粒体蛋白质对种子萌发可能具有重要意义。然后,我们综述了种子线粒体蛋白质的羰基化、磷酸化和亚硝基化,并讨论了这些翻译后修饰(PTM)与种子萌发调控之间可能存在的联系。