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在恒定光照下,蓝藻 sp.ATCC 51142 的代谢和基因表达呈现出有节奏且持续的波动。

Rhythmic and sustained oscillations in metabolism and gene expression of Cyanothece sp. ATCC 51142 under constant light.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Bombay Powai, Mumbai, India.

Gippsland School of Information Technology, Monash University VIC, Australia.

出版信息

Front Microbiol. 2013 Dec 6;4:374. doi: 10.3389/fmicb.2013.00374. eCollection 2013.

Abstract

Cyanobacteria, a group of photosynthetic prokaryotes, oscillate between day and night time metabolisms with concomitant oscillations in gene expression in response to light/dark cycles (LD). The oscillations in gene expression have been shown to sustain in constant light (LL) with a free running period of 24 h in a model cyanobacterium Synechococcus elongatus PCC 7942. However, equivalent oscillations in metabolism are not reported under LL in this non-nitrogen fixing cyanobacterium. Here we focus on Cyanothece sp. ATCC 51142, a unicellular, nitrogen-fixing cyanobacterium known to temporally separate the processes of oxygenic photosynthesis and oxygen-sensitive nitrogen fixation. In a recent report, metabolism of Cyanothece 51142 has been shown to oscillate between photosynthetic and respiratory phases under LL with free running periods that are temperature dependent but significantly shorter than the circadian period. Further, the oscillations shift to circadian pattern at moderate cell densities that are concomitant with slower growth rates. Here we take this understanding forward and demonstrate that the ultradian rhythm under LL sustains at much higher cell densities when grown under turbulent regimes that simulate flashing light effect. Our results suggest that the ultradian rhythm in metabolism may be needed to support higher carbon and nitrogen requirements of rapidly growing cells under LL. With a comprehensive Real time PCR based gene expression analysis we account for key regulatory interactions and demonstrate the interplay between clock genes and the genes of key metabolic pathways. Further, we observe that several genes that peak at dusk in Synechococcus peak at dawn in Cyanothece and vice versa. The circadian rhythm of this organism appears to be more robust with peaking of genes in anticipation of the ensuing photosynthetic and respiratory metabolic phases.

摘要

蓝藻是一类光合原核生物,其基因表达会随光/暗循环(LD)发生昼夜代谢振荡。在模式蓝藻集胞藻 PCC 7942 中,基因表达的振荡在持续光照(LL)下以 24 小时的自由运行周期维持,而在这种非固氮蓝藻中,代谢的等效振荡在 LL 下并未被报道。在这里,我们专注于 Cyanothece sp. ATCC 51142,这是一种单细胞、固氮蓝藻,已知其将产氧光合作用和对氧敏感的固氮过程时间上分开。在最近的一项研究中,Cyanothece 51142 的代谢被证明在 LL 下在光合和呼吸阶段之间振荡,自由运行周期随温度而变化,但明显短于昼夜周期。此外,当细胞密度适中时,振荡会转变为昼夜模式,同时生长速率变慢。在这里,我们将这一理解向前推进,并证明在高细胞密度下,LL 下的超短周期节律在模拟闪光效果的湍流条件下持续存在。我们的研究结果表明,在 LL 下,超短周期节律可能是快速生长细胞满足更高碳氮需求所必需的。通过基于实时 PCR 的综合基因表达分析,我们解释了关键的调控相互作用,并证明了生物钟基因与关键代谢途径基因之间的相互作用。此外,我们观察到在集胞藻中在黄昏时达到峰值的几个基因在 Cyanothece 中在黎明时达到峰值,反之亦然。该生物体的昼夜节律似乎更稳健,基因在预期随后的光合和呼吸代谢阶段时达到峰值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2212/3854555/ab1eddff96b2/fmicb-04-00374-g001.jpg

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