Boucherit Zeyneb, Flahaut Sigrid, Djoudi Brahim, Mouas Toma-Nardjes, Mechakra Aicha, Ameddah Souad
Laboratoire d'Obtention des Substances Thérapeutiques, Université des Frères Mentouri Constantine 1 (UFMC1), Campus Chaabet Ersas, 25000, Constantine, Algeria.
Laboratoire de Microbiologie Appliquée, Université Libre de Bruxelles, Campus du CERIA, 1070, Brussels, Belgium.
Curr Microbiol. 2022 Apr 30;79(6):178. doi: 10.1007/s00284-022-02868-8.
Enzymes from halophilic fungi offer interesting biotechnological applications, which lead us to explore novel producing strains. 23 fungi were isolated from Algerian saline soil. Among the three strains presenting laccase activities, one exhibited the high decolourising capacity of olive mill wastewaters. Identification showed that the efficient isolate GS15 belongs to Penicillium chrysogenum. This strain achieves optimal growth at 15% NaCl, 25 °C, pH 5, dark, aerobic and static conditions. The selected fungus is capable of producing extracellular enzymes as follows: caseinase, tannase, esterase and lipase. The laccase activities produced by P. chrysogenum on raw olive wastes are being reported here for the first time. GS15 produced 183.0 and 203.0 U/L of laccase activities in 10% and 20% unsupplemented olive mill wastewaters, respectively. The significant enzymatic activities can be correlated to the high ability of GS15 to decolourise industrial wastewater from the olive oil extraction. In these conditions no pre-treatment of olive wastewaters was needed. On the untreated grinded and non-grinded olive pomace, the laccase activity was 5.78 U/g and 5.36 U/g, respectively. Because the halophilic fungus has basic requirement for growth, this fungal strain is promising for saline biotechnological applications.
嗜盐真菌中的酶具有有趣的生物技术应用,这促使我们探索新的生产菌株。从阿尔及利亚盐渍土中分离出23种真菌。在具有漆酶活性的三种菌株中,有一种对橄榄油厂废水具有很高的脱色能力。鉴定表明,高效分离株GS15属于产黄青霉。该菌株在15% NaCl、25 °C、pH 5、黑暗、需氧和静态条件下实现最佳生长。所选真菌能够产生以下胞外酶:酪蛋白酶、鞣酸酶、酯酶和脂肪酶。产黄青霉在生橄榄废料上产生的漆酶活性在此首次报道。GS15在10%和20%未添加补充剂的橄榄油厂废水中分别产生183.0和203.0 U/L的漆酶活性。显著的酶活性与GS15对橄榄油提取工业废水的高脱色能力相关。在这些条件下,无需对橄榄油废水进行预处理。在未经处理的研磨和未研磨橄榄果渣上,漆酶活性分别为5.78 U/g和5.36 U/g。由于嗜盐真菌对生长有基本要求,该真菌菌株在盐渍生物技术应用方面具有前景。