首页> 外文期刊>Plant and cell physiology >Low Temperature Stress Alters the Expression of Phytoene Desaturase Genes (crtP1 and crtP2) and the zeta-Carotene Desaturase Gene (crtQ) Together with the Cellular Carotenoid Content of Euglena gracilis
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Low Temperature Stress Alters the Expression of Phytoene Desaturase Genes (crtP1 and crtP2) and the zeta-Carotene Desaturase Gene (crtQ) Together with the Cellular Carotenoid Content of Euglena gracilis

机译:低温应激改变植物去脱离酶基因(CRTP1和CRTP2)和Zeta-Carotene停脱酶基因(CRTQ)的表达以及Euglena Gracilis的细胞类胡萝卜素含量

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摘要

Carotenoids participate in photosynthesis and photoprotection in oxygenic phototrophs. Euglena gracilis, a eukaryotic phytoflagellate, synthesizes several carotenoids: beta-carotene, neoxanthin, diadinoxanthin and diatoxanthin. Temperature is one of the most striking external stimuli altering carotenoid production. In the present study, to elucidate the regulation of carotenoid synthesis of E. gracilis in response to environmental stimuli, we functionally identified phytoene desaturase genes (crtP1 and crtP2) and the zeta-carotene desaturase gene (crtQ) of this alga and analyzed expression of those genes and the composition of major carotenoids in cells grown under cold (20 degrees C) and high-intensity light (HL; 240 mu mol photon m(-2) s(-1)) conditions. 20 degrees C-HL treatment increased the transcriptional level of the phytoene synthase gene (crtB), and crtP1 and crtP2, whose products catalyze the early steps of carotenoid biosynthesis in this alga. Cultivation at 20 degrees C under illumination at 55 mmol photon m(-2) s(-1) (low-intensity light; LL) decreased the cell concentration, Chl and total major carotenoid content by 61, 75 and 50%, respectively, relative to control (25 degrees C-LL) cells. When grown at 20 degrees C-HL, the cells showed a greater decrease in cell concentration and photosynthetic pigment contents than those in 20 degrees C-LL. beta-Carotene, neoxanthin and diadinoxanthin contents were decreased by more than half in 20 degrees C-LL and 20 degrees C-HL treatments. On the other hand, when subjected to 20 degrees C-LL and 20 degrees C-HL, the cells retained a diatoxanthin content comparable with control cells. Our findings suggested that diatoxanthin plays crucial roles in the acclimation to cold and intense light condition. To the best of our knowledge, this is the first report on a photosynthetic organism possessing dual crtP genes.
机译:类胡萝卜素参与含氧光学的光合作用和光保护。 Euglena Gracilis是一种真核植物植物,合成几种类胡萝卜素:β-胡萝卜素,Neoxanthin,Diatinoxanthin和Diatoxanthin。温度是最引人注目的外部刺激改变类胡萝卜素生产之一。在本研究中,为了响应环境刺激,阐明Chotenoide合成E. Gracilis的调节,我们用来鉴定了该藻类的植物去饱和酶基因(CRTP1和CRTP2)和Zeta-胡萝卜酸脲酶基因(CRTQ)并分析了这些基因和在冷(20℃)和高强度光(HL;240μmMol光子M(-2)S(-1))条件下生长的细胞中的主要类胡萝卜素组合物。 20摄氏度C-HL处理增加了植物合酶基因(CRTB)和CRTP1和CRTP2的转录水平,其产品催化了该藻类类胡萝卜素生物合成的早期步骤。在55mmol光子M(-2)S(-1)(低强度光; L1)下照明在20摄氏度下培养分别降低细胞浓度,CHL和总类胡萝卜素含量61,75和50%,相对于对照(25℃C-LL)细胞。当以20度C-HL生长时,细胞显示细胞浓度和光合颜料含量的更大减少,而不是20摄氏度。 β-胡萝卜素,Neoxanthin和Didinoxanthin含量超过20℃-11的一半以上,20℃-HL处理。另一方面,当受到20摄氏度和20摄氏度的20摄氏度时,细胞保留与对照细胞相当的分胍原素含量。我们的研究结果表明,Diataxanthin在适应性和强烈的光线条件下发挥着关键作用。据我们所知,这是关于具有双CRTP基因的光合生物的第一份报告。

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