2013•Journal of the American Oil Chemists SocietyOpen access

Impact of Lipase‐Mediated Hydrolysis of Castor Oil on γ‐Decalactone Production by Yarrowia lipolytica

Nelma Gomes, Adelaide Braga, José António Teixeira, Isabel Belo

Open full text 40 citations

Abstract

Abstract γ‐Decalactone is an industrially interesting peach‐like aroma compound that can be produced biotechnologically through the biotransformation of ricinoleic acid. Castor oil (CO) is the raw material most used as the ricinoleic acid source. The effect of different CO concentrations on the γ‐decalactone production by Yarrowia lipolytica was investigated in batch processing, and 30 g L−1 was found to be the optimal oil concentration. Under these conditions, cells were able to produce lipase but at low activity levels, which might limit ricinoleic acid release and consequently, the γ‐decalactone production rate. Thus, the enzymatic hydrolysis of CO by commercial lipases was studied under different operating conditions. Lipozyme TL IM was found to be the most efficient and the optimal hydrolysis conditions were pH 8 and 27 °C. The use of hydrolyzed CO in the aroma production allowed a decrease in the lag phase for γ‐decalactone secretion.

About this research paper

What this paper is about

Abstract γ‐Decalactone is an industrially interesting peach‐like aroma compound that can be produced biotechnologically through the biotransformation of ricinoleic acid. Castor oil (CO) is the raw material most used as the ricinoleic acid source. The effect of different CO concentrations on the γ‐decalactone production by Yarrowia lipolytica was investigated in batch processing, and 30 g L−1 was found to be the optimal oil concentration. Under these conditions, cells were able to produce lipase but at low activity levels, which might limit ricinoleic acid release and consequently, the γ‐decalactone production rate. Thus, the enzymatic hydrolysis of CO by commercial lipases was studied under different operating conditions. Lipozyme TL IM was found to be the most efficient and the optimal hydrolysis conditions were pH 8 and 27 °C. The use of hydrolyzed CO in the aroma production allowed a decrease in the lag phase for γ‐decalactone secretion.

Why it matters

OpenAlex reports 40 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

Abstract γ‐Decalactone is an industrially interesting peach‐like aroma compound that can be produced biotechnologically through the biotransformation of ricinoleic acid. Castor oil (CO) is the raw material most used as the ricinoleic acid source. The effect of different CO concentrations on the γ‐decalactone production by Yarrowia lipolytica was investigated in batch processing, and 30 g L−1 was found to be the optimal oil concentration. Under these conditions, cells were able to produce lipase but at low activity levels, which might limit ricinoleic acid release and consequently, the γ‐decalactone production rate. Thus, the enzymatic hydrolysis of CO by commercial lipases was studied under different operating conditions. Lipozyme TL IM was found to be the most efficient and the optimal hydrolysis conditions were pH 8 and 27 °C. The use of hydrolyzed CO in the aroma production allowed a decrease in the lag phase for γ‐decalactone secretion.

Key concepts: Ricinoleic acid, Yarrowia, Castor oil, Lipase, Chemistry, Hydrolysis, Aroma compound, Aroma

Related papers

Back to paper searchBrowse research topicsOriginal source
Impact of Lipase‐Mediated Hydrolysis of Castor Oil on γ‐Decalactone Production by Yarrowia lipolytica — Research Paper | ScholarLens