UMR 7093, UPMC Univ Paris 06, LOV, Observatoire Océanologique, F-06234, Villefranche/mer, France; UMR 7093, CNRS, LOV, Observatoire Océanologique, F-06234, Villefranche/mer, France.
Environ Microbiol. 2013 Dec;15(12):3292-304. doi: 10.1111/1462-2920.12163. Epub 2013 Jul 10.
We analysed the effect of photoperiod length (PPL) (16:8 and 8:16 h of light-dark regime, named long and short PPL, respectively) on the temporal orchestration of the two antagonistic, carbon and nitrogen acquisitions in the unicellular, diazotrophic cyanobacterium Crocosphaera watsonii strain WH8501 growing diazotrophically. Carbon and nitrogen metabolism were monitored at high frequency, and their patterns were compared with the cell cycle progression. The oxygen-sensitive N2 fixation process occurred mainly during the dark period, where photosynthesis cannot take place, inducing a light-dark cycle of cellular C : N ratio. Examination of circadian patterns in the cell cycle revealed that cell division occurred during the midlight period, (8 h and 4 h into the light in the long and short PPL conditions, respectively), thus timely separated from the energy-intensive diazotrophic process. Results consistently show a nearly 5 h time lag between the end of cell division and the onset of N2 fixation. Shorter PPLs affected DNA compaction of C. watsonii cells and also led to a decrease in the cell division rate. Therefore, PPL paces the growth of C. watsonii: a long PPL enhances cell division while a short PPL favours somatic growth (biomass production) with higher carbon and nitrogen cell contents.
我们分析了光周期长度(PPL)(16:8 和 8:16 小时的光暗循环,分别命名为长 PPL 和短 PPL)对固氮单细胞蓝藻 Crocosphaera watsonii WH8501 中两种拮抗的碳和氮获取的时间协调的影响。我们高频监测了碳氮代谢,并将其模式与细胞周期进展进行了比较。对氧气敏感的 N2 固定过程主要发生在黑暗期,此时光合作用无法进行,导致细胞 C:N 比的光暗循环。对细胞周期的昼夜节律模式的检测表明,细胞分裂发生在中光期(在长 PPL 和短 PPL 条件下,分别为光照的 8 小时和 4 小时),从而与能量密集型固氮过程及时分离。结果一致表明,细胞分裂结束和 N2 固定开始之间几乎有 5 小时的时间滞后。较短的 PPL 会影响 C. watsonii 细胞的 DNA 紧缩,也会导致细胞分裂率下降。因此,PPL 调节 C. watsonii 的生长:长 PPL 促进细胞分裂,而短 PPL 有利于体细胞生长(生物量产生),具有更高的碳和氮细胞含量。