Detail publikačního výsledku

Effect of PHA on viability and stress resilience in Rhodospirillum rubrum

PACASOVÁ, V.; SLANINOVÁ, E.; MRÁZOVÁ, K.; FLEURIOT-BLITMAN, H.; AMSTUTZ, V.; KRZYŽÁNEK, V.; ZINN, M.; OBRUČA, S.

Originální název

Effect of PHA on viability and stress resilience in Rhodospirillum rubrum

Anglický název

Effect of PHA on viability and stress resilience in Rhodospirillum rubrum

Druh

Článek Scopus

Originální abstrakt

Aims: Purple bacteria possess considerable biotechnological potential due to their versatile metabolism, enabling the production of valuable biopolymers such as polyhydroxyalkanoates (PHAs). PHAs are biodegradable biopolyesters that serve in microorganisms as intracellular carbon and energy sources and can also function as protective compounds against environmental stress. This study focuses on Rhodospirillum rubrum, a purple non-sulfur bacterium known for its metabolic flexibility and ability to accumulate PHAs. Methods and results: A wild-type strain (WT) Rhodospirillum rubrum (DSM 467) and a ∆phaC1∆phaC2 mutant strain incapable of PHA biosynthesis were investigated. Both strains were cultivated under chemoheterotrophic conditions with acetate as sole carbon source prior to stress exposure selected stressors such as elevated temperature, osmotic stress, and repeated freeze-thaw cycles. Cell viability was determined by flow cytometry, while morphological changes were observed using electron microscopy. Thus, we could demonstrate that PHA granules contribute to stress resilience under both freeze cycles and high osmotic pressure conditions, but not to enhanced temperatures. Conclusions: PHA plays an important role in maintaining cellular integrity of the wild-type strain during acute osmotic shock. In contrast, the mutant ΔphaC1ΔphaC2 strain exhibited pronounced structural damage, including loss of intracellular organization and release of chromatophores into the extracellular space, highlighting the importance of PHA metabolism for osmotic stress resilience. In contrast to other studies, PHA did not provide a protective effect against high or low temperature in R. rubrum wild-type and mutant strains.

Anglický abstrakt

Aims: Purple bacteria possess considerable biotechnological potential due to their versatile metabolism, enabling the production of valuable biopolymers such as polyhydroxyalkanoates (PHAs). PHAs are biodegradable biopolyesters that serve in microorganisms as intracellular carbon and energy sources and can also function as protective compounds against environmental stress. This study focuses on Rhodospirillum rubrum, a purple non-sulfur bacterium known for its metabolic flexibility and ability to accumulate PHAs. Methods and results: A wild-type strain (WT) Rhodospirillum rubrum (DSM 467) and a ∆phaC1∆phaC2 mutant strain incapable of PHA biosynthesis were investigated. Both strains were cultivated under chemoheterotrophic conditions with acetate as sole carbon source prior to stress exposure selected stressors such as elevated temperature, osmotic stress, and repeated freeze-thaw cycles. Cell viability was determined by flow cytometry, while morphological changes were observed using electron microscopy. Thus, we could demonstrate that PHA granules contribute to stress resilience under both freeze cycles and high osmotic pressure conditions, but not to enhanced temperatures. Conclusions: PHA plays an important role in maintaining cellular integrity of the wild-type strain during acute osmotic shock. In contrast, the mutant ΔphaC1ΔphaC2 strain exhibited pronounced structural damage, including loss of intracellular organization and release of chromatophores into the extracellular space, highlighting the importance of PHA metabolism for osmotic stress resilience. In contrast to other studies, PHA did not provide a protective effect against high or low temperature in R. rubrum wild-type and mutant strains.

Klíčová slova

abiotic stress; bacteria; biopolymers; cell injury; cell membrane.

Klíčová slova v angličtině

abiotic stress; bacteria; biopolymers; cell injury; cell membrane.

Autoři

PACASOVÁ, V.; SLANINOVÁ, E.; MRÁZOVÁ, K.; FLEURIOT-BLITMAN, H.; AMSTUTZ, V.; KRZYŽÁNEK, V.; ZINN, M.; OBRUČA, S.

Vydáno

16.06.2026

Nakladatel

Oxford Academic

Periodikum

Journal of applied microbiology

Svazek

24

Číslo

June

Stát

Spojené království Velké Británie a Severního Irska

Strany počet

31

URL

BibTex

@article{BUT211992,
  author="Viktorie-Alexandra {Pacasová} and Eva {Slaninová} and Kateřina {Mrázová} and Hugo {Fleuriot-Blitman} and Véronique {Amstutz} and Vladislav {Krzyžánek} and Manfred {Zinn} and Stanislav {Obruča}",
  title="Effect of PHA on viability and stress resilience in Rhodospirillum rubrum",
  journal="Journal of applied microbiology",
  year="2026",
  volume="24",
  number="June",
  pages="31",
  doi="10.1093/jambio/lxag147",
  issn="1364-5072",
  url="https://academic.oup.com/jambio/article-abstract/137/6/lxag147/8709293?redirectedFrom=fulltext"
}