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最小光合自养生物原绿球藻的转录组、光生理学和细胞周期编排

Choreography of the transcriptome, photophysiology, and cell cycle of a minimal photoautotroph, prochlorococcus.

作者信息

Zinser Erik R, Lindell Debbie, Johnson Zackary I, Futschik Matthias E, Steglich Claudia, Coleman Maureen L, Wright Matthew A, Rector Trent, Steen Robert, McNulty Nathan, Thompson Luke R, Chisholm Sallie W

机构信息

Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts, United States of America.

出版信息

PLoS One. 2009;4(4):e5135. doi: 10.1371/journal.pone.0005135. Epub 2009 Apr 8.

Abstract

The marine cyanobacterium Prochlorococcus MED4 has the smallest genome and cell size of all known photosynthetic organisms. Like all phototrophs at temperate latitudes, it experiences predictable daily variation in available light energy which leads to temporal regulation and partitioning of key cellular processes. To better understand the tempo and choreography of this minimal phototroph, we studied the entire transcriptome of the cell over a simulated daily light-dark cycle, and placed it in the context of diagnostic physiological and cell cycle parameters. All cells in the culture progressed through their cell cycles in synchrony, thus ensuring that our measurements reflected the behavior of individual cells. Ninety percent of the annotated genes were expressed, and 80% had cyclic expression over the diel cycle. For most genes, expression peaked near sunrise or sunset, although more subtle phasing of gene expression was also evident. Periodicities of the transcripts of genes involved in physiological processes such as in cell cycle progression, photosynthesis, and phosphorus metabolism tracked the timing of these activities relative to the light-dark cycle. Furthermore, the transitions between photosynthesis during the day and catabolic consumption of energy reserves at night- metabolic processes that share some of the same enzymes--appear to be tightly choreographed at the level of RNA expression. In-depth investigation of these patterns identified potential regulatory proteins involved in balancing these opposing pathways. Finally, while this analysis has not helped resolve how a cell with so little regulatory capacity, and a 'deficient' circadian mechanism, aligns its cell cycle and metabolism so tightly to a light-dark cycle, it does provide us with a valuable framework upon which to build when the Prochlorococcus proteome and metabolome become available.

摘要

海洋蓝细菌聚球藻MED4拥有所有已知光合生物中最小的基因组和细胞大小。与温带地区的所有光合生物一样,它经历可预测的每日光能变化,这导致关键细胞过程的时间调节和分配。为了更好地理解这种最小光合生物的节奏和编排,我们在模拟的昼夜光暗循环中研究了细胞的整个转录组,并将其置于诊断性生理和细胞周期参数的背景下。培养物中的所有细胞都同步进行细胞周期,从而确保我们的测量反映单个细胞的行为。90%的注释基因表达,80%在昼夜循环中有周期性表达。对于大多数基因,表达在日出或日落附近达到峰值,尽管基因表达的更细微相位也很明显。参与细胞周期进程、光合作用和磷代谢等生理过程的基因转录本的周期性跟踪了这些活动相对于光暗循环的时间。此外,白天光合作用与夜间能量储备的分解代谢消耗之间的转换——这些代谢过程共享一些相同的酶——在RNA表达水平上似乎编排得很紧密。对这些模式的深入研究确定了参与平衡这些相反途径的潜在调节蛋白。最后,虽然这项分析无助于解决一个具有如此少调节能力和“缺陷”昼夜节律机制的细胞如何将其细胞周期和代谢如此紧密地与光暗循环对齐的问题,但它确实为我们提供了一个有价值的框架,当聚球藻的蛋白质组和代谢组可用时可以在此基础上进行构建。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c06/2663038/74a2f3860a80/pone.0005135.g001.jpg

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