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Circadian Rhythms of Isoprene Biosynthesis in Grey Poplar Leaves

机译:杨树叶片中异戊二烯生物合成的昼夜节律

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摘要

Isoprene (2-methyl-1,3-butadiene) emission varies diurnally in different species. In poplar (Populus spp.), it has recently been shown that the gene encoding the synthesizing enzyme for isoprene, isoprene synthase (ISPS), displays diurnal variation in expression. Working on shoot cultures of Grey poplar (Populus x canescens) placed under a different light regime in phytochambers, we showed that these variations in PcISPS gene expression, measured by quantitative real-time polymerase chain reaction, are not only due to day-night changes, but also are linked to an internal circadian clock. Measurement of additional selected isoprenoid genes revealed that phytoene synthase (carotenoid pathway) displays similar fluctuations, whereas 1-deoxy-D-xylulose 5-phosphate reductoisomerase, possibly the first committed enzyme of the 1-deoxy-D-xylulose 5-phosphate pathway, only shows light regulation. On the protein level, it appeared that PcISPS activity and protein content became reduced under constant darkness, whereas under constant light, activity and protein content of this enzyme were kept high. In contrast, isoprene emission rates under continuous irradiation displayed circadian changes as is the case for gene expression of PcISPS. Furthermore, binding assays with Arabidopsis (Arabidopsis thaliana) late elongated hypocotyl, a transcription factor of Arabidopsis involved in circadian regulation, clearly revealed the presence of circadian-determining regulatory elements in the promoter region of PcISPS
机译:异戊二烯(2-甲基-1,3-丁二烯)的排放量在不同物种中昼夜变化。最近,在杨树(杨属)中,编码异戊二烯合成酶异戊二烯合酶(ISPS)的基因显示出昼夜变化的表达。研究在不同光照条件下在植物室中放置的灰杨(Populus x canescens)的芽培养物,我们发现,通过定量实时聚合酶链反应测量的PcISPS基因表达的这些变化不仅是由于昼夜变化,但也链接到内部生物钟。测量其他选定的类异戊二烯基因后发现,六氢番茄红素合酶(类胡萝卜素途径)显示出相似的波动,而1-脱氧-D-木酮糖5-磷酸还原异构酶,可能是1-脱氧-D-木酮糖5-磷酸途径的第一个被确认的酶,只显示调光。在蛋白质水平上,似乎PcISPS活性和蛋白质含量在恒定黑暗条件下降低,而在恒定光照下,该酶的活性和蛋白质含量保持较高。相反,在连续照射下异戊二烯的排放速率显示出昼夜节律变化,这与PcISPS基因表达的情况一样。此外,与拟南芥(Arabidopsis thaliana)晚伸长的下胚轴(拟南芥的转录因子参与昼夜节律调控)的结合试验清楚地揭示了PcISPS启动子区域中存在昼夜节律决定性调控元件。

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