Lipolytic production from solid-state fermentation of the filamentous fungus Penicillium polonicum and its applicability as biocatalyst in the synthesis of ethyl oleate

Jéssyca Ketterine Carvalho,Cíntia Krüger,Maruhen Amir Datsch Silveira, Pitágoras Augusto Piana,Maria Luiza Fernandes Rodrigues, Adriana Fiorini Rosado, Rosemeire Aparecida da Silva de Lucca,Marcia Regina Fagundes-Klen, Edson Antônio da Silva, Cleide Viviane Buzanello,Joel Gustavo Teleken, Ricardo Antonio Zanella

Environmental Science and Pollution Research(2024)

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摘要
Lipases represent versatile biocatalysts extensively employed in transesterification reactions for ester production. Ethyl oleate holds significance in biodiesel production, serving as a sustainable alternative to petroleum-derived diesel. In this study, our goal was to prospect lipase and assess its efficacy as a biocatalyst for ethyl oleate synthesis. For quantitative analysis, a base medium supplemented with Rhodamine B, olive oil, and Tween 80 was used. Solid-state fermentation utilized crambe seeds of varying particle sizes and humidity levels as substrates. In the synthesis of ethyl oleate, molar ratios of 1:3, 1:6, and 1:9, along with a total enzymatic activity of 60 U in n-heptane, were utilized at temperatures of 30 °C, 37 °C, and 44 °C. Reactions were conducted in a shaker at 200 rpm for 60 min. As a result, we first identified Penicillium polonicum and employed the method of solid-state fermentation using crambe seeds as a substrate to produce lipase. Our findings revealed heightened lipolytic activity (22.5 Ug−1) after 96 h of fermentation using crambe cake as the substrate. Optimal results were achieved with crambe seeds at a granulometry of 0.6 mm and a fermentation medium humidity of 60
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关键词
Enzymes,Lipase,Biocatalysis,Biotechnology,Petroleum-derived diesel,Sustainability
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