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A response regulator of cyanobacteria integrates diverse environmental signals and is critical for survival under extreme conditions

机译:蓝细菌的反应调节剂整合了多种环境信号,对于极端条件下的生存至关重要

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摘要

Microorganisms must sense their environment and rapidly tune their metabolism to ambient conditions to efficiently use available resources. We have identified a gene encoding a response regulator, NblR, that complements a cyanobacterial mutant unable to degrade its light-harvesting complex (phycobilisome), in response to nutrient deprivation. Cells of the nblR mutant (i) have more phycobilisomes than wild-type cells during nutrient-replete growth, (ii) do not degrade phycobilisomes during sulfur, nitrogen, or phosphorus limitation, (iii) cannot properly modulate the phycobilisome level during exposure to high light, and (iv) die rapidly when starved for either sulfur or nitrogen, or when exposed to high light. Apart from regulation of phycobilisome degradation, NblR modulates additional functions critical for cell survival during nutrient-limited and high-light conditions. NblR does not appear to be involved in acclimation responses that occur only during a specific nutrient limitation. In contrast, it controls at least some of the general acclimation responses; those that occur during any of a number of different stress conditions. NblR plays a pivotal role in integrating different environmental signals that link the metabolism of the cell to light harvesting capabilities and the activities of the photosynthetic apparatus; this modulation is critical for cell survival.
机译:微生物必须感知其环境并迅速将其新陈代谢调整至环境条件,以有效利用可用资源。我们已经鉴定出一种编码响应调节剂NblR的基因,该基因与无法降解其光捕获复合物(藻胆体)的蓝细菌突变体互补,以响应营养剥夺。 nblR突变体的细胞(i)在营养丰富的生长过程中具有比野生型细胞更多的藻胆体,(ii)在硫,氮或磷受限的情况下不会降解藻胆体,(iii)在暴露于暴露期间不能适当调节藻胆体水平(iv)饿于硫或氮不足或暴露于强光下会迅速死亡。除了调节藻胆体降解外,NblR还调节在营养受限和强光条件下对细胞存活至关重要的其他功能。 NblR似乎不参与仅在特定养分限制期间发生的驯化反应。相反,它控制至少一些一般的适应性响应;在许多不同的压力条件下发生的应力。 NblR在整合不同的环境信号方面起着关键作用,这些信号将细胞的新陈代谢与光的收集能力和光合作用的活动联系起来。这种调节对于细胞存活至关重要。

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