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首页> 外文期刊>Journal of phycology >TRANSCRIPTIONAL ANALYSIS OF THE UNICELLULAR, DIAZOTROPHIC CYANOBACTERIUM CYANOTHECE SP. ATCC 51142 GROWN UNDER SHORT DAY/NIGHT CYCLES
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TRANSCRIPTIONAL ANALYSIS OF THE UNICELLULAR, DIAZOTROPHIC CYANOBACTERIUM CYANOTHECE SP. ATCC 51142 GROWN UNDER SHORT DAY/NIGHT CYCLES

机译:单细胞,重生蓝藻蓝藻SP的转录分析。在短日/夜周期下生长的ATCC 51142

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摘要

Cyanothece sp. strain ATCC 51142 is a unicellular, diazotrophic cyanobacterium that demonstrates extensive metabolic periodicities of photosynthesis, respiration, and nitrogen fixation when grown under N-fixing conditions. We have performed a global transcription analysis of this organism using 6 h light:dark (L:D) cycles in order to determine the response of the cell to these conditions and to differentiate between diurnal and circadian-regulated genes. In addition, we used a context-likelihood of relatedness (CLR) analysis with these data and those from 2 d L:D and L:D plus continuous light experiments to better differentiate between diurnal and circadian-regulated genes. Cyanothece sp. acclimated in several ways to growth under short L:D conditions. Nitrogen was fixed in every second dark period and only once in each 24 h period. Nitrogen fixation was strongly correlated to the energy status of the cells and glycogen breakdown, and high respiration rates were necessary to provide appropriate energy and anoxic conditions for this process. We conclude that glycogen breakdown is a key regulatory step within these complex processes. Our results demonstrated that the main metabolic genes involved in photosynthesis, respiration, nitrogen fixation, and central carbohydrate metabolism have strong (or total) circadian-regulated components. The short L:D cycles enable us to identify transcriptional differences among the family of psbA genes, as well as the differing patterns of the hup genes, which follow the same pattern as nitrogenase genes, relative to the hox genes, which displayed a diurnal, dark-dependent gene expression.
机译:蓝藻ATCC 51142菌株是单细胞重氮蓝藻细菌,在固氮条件下生长时,表现出广泛的光合作用,呼吸作用和固氮代谢周期。为了确定细胞对这些条件的反应并区分昼夜节律和昼夜节律调控的基因,我们使用6小时的明暗循环(L:D)对这种生物进行了全局转录分析。此外,我们使用上下文相关性(CLR)分析这些数据以及来自2 d L:D和L:D的数据以及连续光实验,以更好地区分昼夜调节和昼夜节律调节的基因。蓝藻在短L:D条件下以多种方式适应生长。氮在每隔一个黑暗的时期被固定,并且在每24小时一次被固定一次。固氮与细胞的能量状态和糖原分解密切相关,高呼吸速率对于为该过程提供适当的能量和缺氧条件是必需的。我们得出结论,糖原分解是这些复杂过程中的关键调控步骤。我们的结果表明,参与光合作用,呼吸作用,固氮作用和中枢糖代谢的主要代谢基因具有较强的(或总的)生物钟调节成分。较短的L:D周期使我们能够识别psbA基因家族之间的转录差异,以及hup基因的不同模式,相对于hox基因,hup基因的模式与固氮酶基因相同,后者表现出昼夜的变化,黑暗依赖性基因表达。

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