Department of Ecological and Biological Sciences (DEB), University of Tuscia, Largo Università snc, 01100 Viterbo, Italy.
Laboratory of Ecology of Marine Fungi, CoNISMa, Department of Ecological and Biological Sciences, University of Tuscia, Largo Università snc, 01100 Viterbo, Italy.
Molecules. 2022 Jan 21;27(3):688. doi: 10.3390/molecules27030688.
The investigation for novel unique extremozymes is a valuable business for which the marine environment has been overlooked. The marine fungus IG119 was tested for growth and chitinolytic enzyme production at different combinations of salinity and pH using response surface methodology. RSM modelling predicted best growth in-between pH 3.0 and 9.0 and at salinity of 0-40‱, and maximum enzyme activity (411.137 IU/L) at pH 6.4 and salinity 0‱; however, quite high production (>390 IU/L) was still predicted at pH 4.5-8.5. The highest growth and activity were obtained, respectively, at pH 4.0 and 8.0, in absence of salt. The crude enzyme was tested at different salinities (0-120‱) and pHs (2.0-13.0). The best activity was achieved at pH 4.0, but it was still high (in-between 3.0 and 12.0) at pH 2.0 and 13.0. Salinity did not affect the activity in all tested conditions. Overall, IG119 was able to grow and produce chitinolytic enzymes under polyextremophilic conditions, and its crude enzyme solution showed more evident polyextremophilic features. The promising chitinolytic activity of IG119 and the peculiar characteristics of its chitinolytic enzymes could be suitable for several biotechnological applications (i.e., degradation of salty chitin-rich materials and biocontrol of spoiling organisms, possibly solving some relevant environmental issues).
研究新型独特极端酶是一项有价值的工作,但海洋环境一直被忽视。采用响应面法研究了海洋真菌 IG119 在不同盐度和 pH 值组合下的生长和几丁质酶生产情况。RSM 模型预测最佳生长条件为 pH3.0-9.0 和盐度 0-40‱,最大酶活(411.137IU/L)在 pH6.4 和盐度 0‱时;然而,在 pH4.5-8.5 时仍预测有较高的酶活(>390IU/L)。在无盐条件下,分别在 pH4.0 和 8.0 时获得最高的生长和活性。粗酶在不同盐度(0-120‱)和 pH(2.0-13.0)下进行了测试。最佳活性在 pH4.0 时获得,但在 pH2.0 和 13.0 时仍保持较高活性(在 3.0-12.0 之间)。在所有测试条件下,盐度均不影响酶活。总之,IG119 能够在多极端条件下生长并产生几丁质酶,其粗酶溶液表现出更明显的多极端特征。IG119 具有有前途的几丁质酶活性和其几丁质酶的特殊特性,可能适用于几种生物技术应用(即,降解富含盐的几丁质材料和生物防治腐败生物,可能解决一些相关的环境问题)。