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Proteomic identification of rhythmic proteins in rice seedlings.

机译:水稻幼苗节律蛋白的蛋白质组学鉴定。

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摘要

Many aspects of plant metabolism that are involved in plant growth and development are influenced by light-regulated diurnal rhythms as well as endogenous clock-regulated circadian rhythms. To identify the rhythmic proteins in rice, periodically grown (12h light/12h dark cycle) seedlings were harvested for three days at six-hour intervals. Continuous dark-adapted plants were also harvested for two days. Among approximately 3000 reproducible protein spots on each gel, proteomic analysis ascertained 354 spots (~12%) as light-regulated rhythmic proteins, in which 53 spots showed prolonged rhythm under continuous dark conditions. Of these 354 ascertained rhythmic protein spots, 74 diurnal spots and 10 prolonged rhythmic spots under continuous dark were identified by MALDI-TOF MS analysis. The rhythmic proteins were functionally classified into photosynthesis, central metabolism, protein synthesis, nitrogen metabolism, stress resistance, signal transduction and unknown. Comparative analysis of our proteomic data with the public microarray database (the Plant DIURNAL Project) and RT-PCR analysis of rhythmic proteins showed differences in rhythmic expression phases between mRNA and protein, suggesting that the clock-regulated proteins in rice are modulated by not only transcriptional but also post-transcriptional, translational, and/or post-translational processes.
机译:涉及植物生长和发育的植物代谢的许多方面都受到光调节的昼夜节律以及内源性时钟调节的昼夜节律的影响。为了鉴定水稻中的节律蛋白,以六小时的间隔收获定期生长(12h光照/ 12h黑暗周期)的幼苗三天。还收获连续的暗适应植物两天。在每个凝胶上大约3000个可重现的蛋白质斑点中,蛋白质组学分析确定了354个斑点(〜12%)为光调节的节奏蛋白,其中53个斑点在连续黑暗条件下表现出延长的节奏。通过MALDI-TOF MS分析,在这354个确定的节律性蛋白斑点中,连续暗处有74个昼夜斑点和10个延长的节律斑点。有节奏的蛋白质在功能上分为光合作用,中枢代谢,蛋白质合成,氮代谢,抗逆性,信号转导和未知。我们的蛋白质组学数据与公共微阵列数据库(Plant DIURNAL Project)的比较分析和节律蛋白的RT-PCR分析表明,mRNA和蛋白在节律表达阶段存在差异,这表明水稻中的时钟调节蛋白不仅受到调控转录,也可以是转录后,翻译和/或翻译后过程。

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