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Redox eustress: Roles for redox-active metabolites in bacterial signaling and behavior

机译:氧化还原eustress:氧化还原活性代谢产物在细菌信号传导和行为中的作用

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摘要

Significance: Plant biologists and microbiologists have long discussed and debated the physiological roles of so-called "redox-active metabolites." These are natural products with unusually high redox activity that are not directly required for active growth. Generally, the biological roles of these compounds have been ascribed to interspecies competition and virulence, and they have been considered important sources of distress. Recent Advances: In this review, we discuss two examples of redox-active metabolites: nitric oxide and phenazines. Both are known for their toxic effects in some organisms and conditions but have recently been shown to provide benefits for some organisms under other conditions. Critical Issues: Biologists are identifying new roles for redox-active metabolites that are not directly related to their toxicity. These roles prompt us to suggest a dismissal of the paradigm that all biological stress is negative (i.e., distress). Future Directions: A more accurate view of redox couples requires characterization of their specific biological effects in a condition-dependent manner. The responses to these compounds can be termed "distress" or "eustress," depending on whether they inhibit survival, provide protection from a compound that would otherwise inhibit survival, or promote survival.
机译:启示:植物生物学家和微生物学家长期讨论和辩论了所谓的“氧化还原活性代谢物”的生理作用。这些是具有异常高氧化还原活性的天然产物,不是活跃生长所直接需要的。通常,这些化合物的生物学作用归因于种间竞争和毒力,它们被认为是困扰的重要根源。最新进展:在本综述中,我们讨论氧化还原活性代谢物的两个例子:一氧化氮和吩嗪。两者均以在某些生物体和条件下的毒性作用而闻名,但最近显示它们在其他条件下对某些生物体具有益处。关键问题:生物学家正在确定与氧化毒性无关的氧化还原活性代谢物的新作用。这些角色促使我们建议取消所有生物学压力均为负(即困扰)的范式。未来发展方向:要更准确地了解氧化还原对,需要以条件依赖的方式表征其特定的生物学效应。对这些化合物的反应可以称为“窘迫”或“ eustress”,这取决于它们是否抑制存活,提供对化合物的保护,否则该化合物会抑制存活或促进存活。

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