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Gene regulation of carbon fixation, storage, and utilization in the diatom phaeodactylum tricornutum acclimated to light/dark cycles

机译:硅藻三角褐指藻中碳固定,储存和利用的基因调控适应光/暗循环

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摘要

The regulation of carbon metabolism in the diatom Phaeodactylum tricornutum at the cell, metabolite, and gene expression levels in exponential fed-batch cultures is reported. Transcriptional profiles and cell chemistry sampled simultaneously at all time points provide a comprehensive data set on carbon incorporation, fate, and regulation. An increase in Nile Red fluorescence (a proxy for cellular neutral lipids) was observed throughout the light period, and water-soluble glucans increased rapidly in the light period. A near-linear decline in both glucans and lipids was observed during the dark period, and transcription profile data indicated that this decline was associated with the onset of mitosis. More than 4,500 transcripts that were differentially regulated during the light/dark cycle are identified, many of which were associated with carbohydrate and lipid metabolism. Genes not previously described in algae and their regulation in response to light were integrated in this analysis together with proposed roles in metabolic processes. Some very fast light-responding genes in, for example, fatty acid biosynthesis were identified and allocated to biosynthetic processes. Transcripts and cell chemistry data reflect the link between light energy availability and light energy-consuming metabolic processes. Our data confirm the spatial localization of processes in carbon metabolism to either plastids or mitochondria or to glycolysis/gluconeogenesis, which are localized to the cytosol, chloroplast, and mitochondria. Localization and diel expression pattern may be of help to determine the roles of different isoenzymes and the mining of genes involved in light responses and circadian rhythms.
机译:据报道,在指数分批补料分批培养中,硅藻硅藻在细胞,代谢产物和基因表达水平上的碳代谢调控。在所有时间点同时采样的转录谱和细胞化学特性可提供有关碳掺入,归宿和调控的全面数据集。在整个光照期观察到尼罗红荧光的增加(细胞中性脂质的替代物),水溶性葡聚糖在光照期迅速增加。在黑暗时期,观察到了葡聚糖和脂质的近乎线性的下降,转录谱数据表明这种下降与有丝分裂的发生有关。鉴定出超过4,500个在明/暗循环中受到差异调节的转录本,其中许多与碳水化合物和脂质代谢有关。先前未在藻类中描述的基因及其对光的响应调控以及拟议的在代谢过程中的作用都整合到了该分析中。例如脂肪酸生物合成中的一些非常快速的光响应基因被鉴定并分配给生物合成过程。成绩单和细胞化学数据反映了光能利用率和光能消耗代谢过程之间的联系。我们的数据证实了碳代谢过程的空间定位为质体或线粒体或糖酵解/糖异生,它们位于细胞质,叶绿体和线粒体中。定位和狄尔​​表达模式可能有助于确定不同同工酶的作用以及光反应和昼夜节律中涉及的基因的挖掘。

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