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Ozone-induced Fatty Acid and Viability Changes in Chlorella

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Journal Plant Physiol
Specialty Physiology
Date 1975 Jan 1
PMID 16659020
Citations 3
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Abstract

Ozone-treated cells of the photosynthetic green alga Chlorella sorokiniana var. pacificensis exhibit an exponential decline in viability, as measured by their ability to form colonies on agar plates. Postexposure conditions appear to have little, if any, effect on this rate of decline. Except in young (early exponential phase) cells, culture age did not affect this rate. The decline in cell viability was correlated with the production of malondialdehyde, arising from the oxidative breakdown of an ozonide of unsaturated fatty acid material. The loss of fatty acids is substantiated by gas-liquid chromatography. A loss of 5 x 10(-15) moles of fatty acid per cell corresponds to 75% nonviable cells after 50 minutes of ozone exposure.

Citing Articles

Decline in Energy Reserves of Chlorella sorokiniana upon Exposure to Ozone.

Heath R Plant Physiol. 1984; 76(3):700-4.

PMID: 16663909 PMC: 1064358. DOI: 10.1104/pp.76.3.700.


Ozone alteration of membrane permeability in chlorella: I. Permeability of potassium ion as measured by rubidium tracer.

Heath R, Frederick P Plant Physiol. 1979; 64(3):455-9.

PMID: 16660987 PMC: 543112. DOI: 10.1104/pp.64.3.455.


Ozone-induced Loss of Intracellular Potassium Ion from Chlorella sorokiniana.

Chimiklis P, Heath R Plant Physiol. 1975; 56(6):723-7.

PMID: 16659380 PMC: 541910. DOI: 10.1104/pp.56.6.723.

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