Delaplace Pierre, Fauconnier Marie-Laure, Sergeant Kjell, Dierick Jean-François, Oufir Mouhssin, van der Wal Froukje, America Antoine H P, Renaut Jenny, Hausman Jean-François, du Jardin Patrick
Gembloux Agricultural University, Plant Biology Unit, Avenue de la Faculté d'Agronomie 2A, 5030 Gembloux, Belgium.
J Exp Bot. 2009;60(4):1273-88. doi: 10.1093/jxb/erp008. Epub 2009 Feb 9.
During post-harvest storage, potato tubers age as they undergo an evolution of their physiological state influencing their sprouting pattern. In the present study, physiological and biochemical approaches were combined to provide new insights on potato (Solanum tuberosum L. cv. Désirée) tuber ageing. An increase in the physiological age index (PAI) value from 0.14 to 0.83 occurred during storage at 4 degrees C over 270 d. Using this reference frame, a proteomic approach was followed based on two-dimensional electrophoresis. In the experimental conditions of this study, a marked proteolysis of patatin occurred after the PAI reached a value of 0.6. In parallel, several glycolytic enzymes were up-regulated and cellular components influencing protein conformation and the response to stress were altered. The equilibrium between the 20S and 26S forms of the proteasome was modified, the 20S form that recycles oxidized proteins being up-regulated. Two proteins belonging to the cytoskeleton were also differentially expressed during ageing. As most of these changes are also observed in an oxidative stress context, an approach focused on antioxidant compounds and enzymes as well as oxidative damage on polyunsaturated fatty acids and proteins was conducted. All the changes observed during ageing seemed to allow the potato tubers to maintain their radical scavenging activity until the end of the storage period as no accumulation of oxidative damage was observed. These data are interpreted considering the impact of reactive oxygen species on the development and the behaviour of other plant systems undergoing ageing or senescence processes.
在收获后的储存过程中,马铃薯块茎会随着生理状态的演变而老化,这会影响其发芽模式。在本研究中,结合生理和生化方法,以提供关于马铃薯(Solanum tuberosum L. cv. Désirée)块茎老化的新见解。在4℃下储存270天期间,生理年龄指数(PAI)值从0.14增加到0.83。基于此参考框架,采用二维电泳的蛋白质组学方法。在本研究的实验条件下,PAI达到0.6后,马铃薯贮藏蛋白发生了显著的蛋白水解。同时,几种糖酵解酶上调,影响蛋白质构象和应激反应的细胞成分发生改变。蛋白酶体20S和26S形式之间的平衡被改变,负责回收氧化蛋白质的2