pН and СО2 Effects on Coelastrella (Scotiellopsis) rubescens Growth and Metabolism1

G. S. Minyuka, E. S. Chelebievaa, I. N. Chubchikovaa, N. V. Dantsyuka, I. V. Drobetskayaa, E. G. Sakhona, O. B. Chivkunovab, K. A. Chekanovb, E. S. Lobakovab, R. A. Sidorovc, and A. E. Solovchenkob

a Kovalevsky Institute of Biology of Southern Seas, Sevastopol

b Biological faculty, Lomonosov State University, 1/12, Vorobievy Gori, GSP-1, Moscow, 119234 Russia

c Timiryazev Institute of Plant Physiology, Russian Academy of Sciences, Moscow

Correspondence to: e-mail: solovchenko@mail.bio.msu.ru

1The article was translated by the authors.
Abbreviations: Ast—astaxanthin; Car—carotenoids; Chl а, Chl b—chlorophylls а and b; FA—fatty acids.

Received 12 November, 2015

Abstract—We studied effects of рН and СО2 enrichment on the physiological condition and biochemical composition of a carotenogenic microalga Coelastrella (Scotiellopsis Vinatzer) rubescens Kaufnerová et Eliás (Scenedesmaceae, Sphaeropleales, Chlorophyceae), a promising source of natural astaxanthin. The microalga was grown at a constant pH (5, 6, 7 or 8) maintained by direct СО2 injection. The air-sparged culture served as the control. Cell division rate and size, dry biomass productivity, the rates of nitrogen and phosphorus uptake as well as photosynthetic pigment and total lipid content and fatty acid composition were followed. С. rubescens possessed a narrow-range рН tolerance (the optimum рН 6–7). Under these conditions, the highest values of the maximum (1.0–1.1 1/day) and average (0.3–0.35 1/day) specific growth rate, chlorophyll а (4.8–4.9%) and total carotenoid dry weight percentages (1.7–1.8%) were recorded. Cell lipid fatty acid unsaturation index (1.851) and polyunsaturated fatty acid percentage (36–39%) and С18:3 ω3/С18:1 ω9 ratio (3.8–4.5) were also the highest under these conditions. A decline of рН to 5 brought about severe stress manifesting itself as a cell division cessation, photosynthetic apparatus reduction, two-fold increase in cell volume, accumulation of dry weight and lipids and a considerable decline in fatty acid unsaturation. Cultivation of С. rubescens without СО2 enrichment resulted in a rapid alkalization of the medium to рН 9.5–10.5 impairing the physiological condition of the cells. Reasons of the deteriorative effects of suboptimal pH values on the physiological condition of C. rubescens are discussed.

Keywords: Coelastrella (Scotiellopsis) rubescens, СО2, cultivation, fatty acids, growth rate, рН, pigments

DOI: 10.1134/S1021443716040105