Identification of a lipolytic Trichoderma sp. and characterization of its extracellular lipase

N. Athukorala, P. Samaraweera
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Abstract

: Lipases are abundantly used in a wide range of industries. Currently, microbial lipases are the most popular source of industrial lipases, of which fungal lipases stand out due to their low cost of production, catalytic activity, and extracellular nature. The demand for lipases has kept researchers exploring new lipolytic fungi. However, the success of such studies lies in the optimization of the growth medium to maximize lipase secretion and the characterization of the enzyme to achieve its highest activity. Therefore, this research was undertaken to identify a lipolytic fungus that was isolated from soil, optimize its lipase secretion, and characterize it. Based on the results of the current study, the lipolytic fungus was identified as Trichoderma longibrachiatum . Its lipase secretion was maximal when it was cultured in a medium containing olive oil and ammonium sulfate as carbon and nitrogen sources, respectively, at a pH of 7.0. Further, the Trichoderma lipase showed its highest activity at a pH of 6.0 and 40 °C. Moreover, preincubation of the lipase with Ca 2+ increased its activity. The enzyme characterization revealed that the extracted Trichoderma lipase has industrially desirable properties. The research results showed that the lipolytic Trichoderma longibrachiatum could be focused on industrial applications.
一株脂解木霉的鉴定及其细胞外脂肪酶的鉴定
:脂肪酶广泛应用于各种工业中。目前,微生物脂肪酶是最受欢迎的工业脂肪酶来源,其中真菌脂肪酶因其低生产成本、催化活性和细胞外性质而脱颖而出。对脂肪酶的需求使研究人员不断探索新的脂解真菌。然而,此类研究的成功在于优化生长培养基以最大限度地分泌脂肪酶,并对酶进行表征以达到其最高活性。因此,本研究从土壤中分离出一种脂解真菌,对其脂肪酶分泌进行优化,并对其进行鉴定。根据目前的研究结果,该脂解真菌被鉴定为长臂木霉。当它在分别含有橄榄油和硫酸铵作为碳源和氮源的培养基中培养时,在pH为7.0时,其脂肪酶分泌最大。此外,木霉脂肪酶在pH 6.0和40°C时表现出最高的活性。此外,用Ca2+预孵育脂肪酶可提高其活性。酶的表征表明,提取的木霉脂肪酶具有工业上理想的性质。研究结果表明,长臂木霉具有较好的工业应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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