1994Marine Ecology Progress SeriesOpen access

Carbon dioxide availability, intracellular pH and growth rate of the coccolithophore Emiliania huxleyi

NA Nimer, Colin Brownlee, MJ Merrett

Open full text 66 citations

Abstract

Growth of a high-calcifying strain of Emiliania huxleyi (Lohmann) Hay & Mohler was investigated in cultures aerated with varying concentrations of CO2 in air and compared with growth in 0.03 % (v/v) CO2.Cultures aerated with 0.1 % (v/v) C02/air under identical conditions resulted in approximately 40% reduction in cell number and final cell yield.A concentration of 0.5% (v/v) CO2 completely inhibited growth.In the virtual absence of CO,, cells could grow to the same levels as in those cultures aerated with air-equilibrated levels of CO2, i.e. 0.03% (v/v) CO2.Measurement of internal pH (pH,) gave comparable results using either the 5,5-dimethyl-2['4C]oxazalidine-2,4-dione (DMO) method or a fluorescent probe technique (BCECF-AM).At external pH 8.3, intracellular pH of cells aerated with air was 6.9 whilst pH, of cells aerated with 0.1 % (v/v) CO2 was 6.4.Lowering external pH decreased growth rate for cultures aerated with 0.03 "., (v/v) CO2.A 30 "/o reduction in cell number and final cell yield occurred at pH 7.8 increasing to almost 60°0 at pH 7.0; pH, decreased at more acidic external pH down to 6.38 at pH 7.0.Carbon dioxide concentration and external pH appear to be equally important in the growth of high-calcifying cells.The significance of these results is considered in relation to the development of mesoscale blooms of E. huxleyi.

Open-access reader

About this research paper

What this paper is about

Growth of a high-calcifying strain of Emiliania huxleyi (Lohmann) Hay & Mohler was investigated in cultures aerated with varying concentrations of CO2 in air and compared with growth in 0.03 % (v/v) CO2.Cultures aerated with 0.1 % (v/v) C02/air under identical conditions resulted in approximately 40% reduction in cell number and final cell yield.A concentration of 0.5% (v/v) CO2 completely inhibited growth.In the virtual absence of CO,, cells could grow to the same levels as in those cultures aerated with air-equilibrated levels of CO2, i.e. 0.03% (v/v) CO2.Measurement of internal pH (pH,) gave comparable results using either the 5,5-dimethyl-2['4C]oxazalidine-2,4-dione (DMO) method or a fluorescent probe technique (BCECF-AM).At external pH 8.3, intracellular pH of cells aerated with air was 6.9 whilst pH, of cells aerated with 0.1 % (v/v) CO2 was 6.4.Lowering external pH decreased growth rate for cultures aerated with 0.03 "., (v/v) CO2.A 30 "/o reduction in cell number and final cell yield occurred at pH 7.8 increasing to almost 60°0 at pH 7.0; pH, decreased at more acidic external pH down to 6.38 at pH 7.0.Carbon dioxide concentration and external pH appear to be equally important in the growth of high-calcifying cells.The significance of these results is considered in relation to the development of mesoscale blooms of E. huxleyi.

Why it matters

OpenAlex reports 66 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Growth of a high-calcifying strain of Emiliania huxleyi (Lohmann) Hay & Mohler was investigated in cultures aerated with varying concentrations of CO2 in air and compared with growth in 0.03 % (v/v) CO2.Cultures aerated with 0.1 % (v/v) C02/air under identical conditions resulted in approximately 40% reduction in cell number and final cell yield.A concentration of 0.5% (v/v) CO2 completely inhibited growth.In the virtual absence of CO,, cells could grow to the same levels as in those cultures aerated with air-equilibrated levels of CO2, i.e. 0.03% (v/v) CO2.Measurement of internal pH (pH,) gave comparable results using either the 5,5-dimethyl-2['4C]oxazalidine-2,4-dione (DMO) method or a fluorescent probe technique (BCECF-AM).At external pH 8.3, intracellular pH of cells aerated with air was 6.9 whilst pH, of cells aerated with 0.1 % (v/v) CO2 was 6.4.Lowering external pH decreased growth rate for cultures aerated with 0.03 "., (v/v) CO2.A 30 "/o reduction in cell number and final cell yield occurred at pH 7.8 increasing to almost 60°0 at pH 7.0; pH, decreased at more acidic external pH down to 6.38 at pH 7.0.Carbon dioxide concentration and external pH appear to be equally important in the growth of high-calcifying cells.The significance of these results is considered in relation to the development of mesoscale blooms of E. huxleyi.

Key concepts: Emiliania huxleyi, Coccolithophore, Carbon dioxide, Total inorganic carbon, Coccolith, Environmental chemistry, Chemistry, Oceanography

Related papers

Back to paper searchBrowse research topicsOriginal source
Carbon dioxide availability, intracellular pH and growth rate of the coccolithophore Emiliania huxleyi — Research Paper | ScholarLens