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Evaluating stress resilience of cyanobacteria through flow cytometry and fluorescent viability assessment

Zuzana Kroupová; Eva Slaninová; Kateřina Mrázová; Vladislav Krzyžánek; Kamila Hrubanová; Ines Fritz; Stanislav Obruča
Folia Microbiologica · Vol. 70, Issue 1 · pp. 205-223 · 2025

Abstract

Cyanobacteria are prokaryotic organisms characterised by their complex structures and a wide range of pigments. With their ability to fix CO 2 , cyanobacteria are interesting for white biotechnology as cell factories to produce various high-value metabolites such as polyhydroxyalkanoates, pigments, or proteins. White biotechnology is the industrial production and processing of chemicals, materials, and energy using microorganisms. It is known that exposing cyanobacteria to low levels of stressors can induce the production of secondary metabolites. Understanding of this phenomenon, known as hormesis, can involve the strategic application of controlled stressors to enhance the production of specific metabolites. Consequently, precise measurement of cyanobacterial viability becomes crucial for process control. However, there is no established reliable and quick viability assay protocol for cyanobacteria since the task is challenging due to strong interferences of autofluorescence signals of intercellular pigments and fluorescent viability probes when flow cytometry is used. We performed the screening of selected fluorescent viability probes used frequently in bacteria viability assays. The results of our investigation demonstrated the efficacy and reliability of three widely utilised types of viability probes for the assessment of the viability of Synechocystis strains. The developed technique can be possibly utilised for the evaluation of the importance of polyhydroxyalkanoates for cyanobacterial cultures with respect to selected stressor—repeated freezing and thawing. The results indicated that the presence of polyhydroxyalkanoate granules in cyanobacterial cells could hypothetically contribute to the survival of repeated freezing and thawing.

Bibliographic Information

JournalFolia Microbiologica
PublisherSpringer
Publication Date2025-02-01
Publication Year2025
Volume70
Issue1
Pages205-223
Document TypeJournal Article
Print ISSN0015-5632
eISSN1874-9356
DOI10.1007/s12223-024-01212-w

Access Information

NARA Access Coverage1956-01-01~Current
Journal Homepagehttps://www.springer.com/journal/12223
Publisher PageOpen Publisher Page
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