氮萎黄中单细胞蓝藻的恢复:一种休眠细菌复苏模型。

IF 0.1 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Microbial Physiology Pub Date : 2021-01-01 Epub Date: 2021-04-20 DOI:10.1159/000515742
Niels Neumann, Sofia Doello, Karl Forchhammer
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引用次数: 17

摘要

氮饥饿诱导蓝藻的发育转变。虽然复杂的褐藻目多细胞蓝藻可以分化出在含氧光合作用下进行固氮的特化细胞,但非重氮营养单细胞菌株,如长聚球菌或聚胞菌PCC 6803,则会过渡到休眠的非生长状态。由于在驯化过程中色素的损失,这个过程被称为黄化。细胞在这种状态下维持活力很长一段时间,直到它们遇到可用的氮源,这触发了一个高度协调的觉醒过程,称为复苏。在细胞褪绿期间维持细胞活力并确保有效复苏的细胞活动的最小集合代表了生物体的BIOS, BIOS是计算机的基本输入/输出系统,在启动后帮助“启动”操作系统。这篇综述总结了最近在蓝藻复苏的研究,代表休眠细菌的觉醒一个强大的模型。
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Recovery of Unicellular Cyanobacteria from Nitrogen Chlorosis: A Model for Resuscitation of Dormant Bacteria.

Nitrogen starvation induces developmental transitions in cyanobacteria. Whereas complex multicellular cyanobacteria of the order Nostocales can differentiate specialized cells that perform nitrogen fixation in the presence of oxygenic photosynthesis, non-diazotrophic unicellular strains, such as Synechococcus elongatus or Synechocystis PCC 6803, undergo a transition into a dormant non-growing state. Due to loss of pigments during this acclimation, the process is termed chlorosis. Cells maintain viability in this state for prolonged periods of time, until they encounter a useable nitrogen source, which triggers a highly coordinated awakening process, termed resuscitation. The minimal set of cellular activity that maintains the viability of cells during chlorosis and ensures efficient resuscitation represents the organism's equivalent of the BIOS, the basic input/output system of a computer, that helps "booting" the operation system after switching on. This review summarizes the recent research in the resuscitation of cyanobacteria, representing a powerful model for the awakening of dormant bacteria.

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来源期刊
CiteScore
5.20
自引率
2.60%
发文量
13
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