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Cell Cycle Regulation in Marine Synechococcus sp. Strains.

机译:海洋Synechococcus sp。中的细胞周期调控。株。

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The cell cycle behavior of four marine strains of the unicellular cyanobacterium Synechococcus sp. was analyzed by examining the DNA frequency distributions of exponentially growing and dark-blocked populations and by considering the patterns of change in these distributions during growth under a diel light-dark cycle. The two modes of cell cycle regulation previously identified in a freshwater and coastal marine Synechococcus isolate, respectively, were represented among the three open-ocean strains we examined. The first of these modes of regulation is consistent with the slow-growth case of the widely accepted prokaryotic cell cycle paradigm. The second appears to involve asynchronous initiation of chromosome replication, the presence of multiple chromosome copies at low growth rates, and variability in chromosome copy number among cells in the population. These characteristics suggest the involvement of a large probabilistic component in cell cycle regulation which could make the application of cell cycle-based estimators of in situ growth rate to Synechococcus populations problematic.
机译:四个海洋菌株的单细胞蓝藻Synechococcus sp。的细胞周期行为。通过检查指数增长和黑暗受阻种群的DNA频率分布并考虑在diel亮-暗周期下生长过程中这些分布的变化模式,来进行分析。我们分别在淡水和沿海海洋Synechococcus分离株中鉴定出了两种细胞周期调控模式,它们是我们研究的三种开放海洋菌株中的代表。这些调节模式中的第一个与被广泛接受的原核细胞周期范例的缓慢增长情况一致。第二种似乎涉及染色体复制的异步启动,低增长率下多个染色体拷贝的存在以及种群中细胞之间染色体拷贝数的变异性。这些特征表明,大量的概率成分参与细胞周期调控,这可能使基于细胞周期的原位生长速率估算器在集球菌种群中的应用成为问题。

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