Mushtaq Qudsia, Ishtiaq Uzair, Joly Nicolas, Qazi Javed Iqbal, Martin Patrick
Microbial Biotechnology Laboratory, Department of Zoology, University of Punjab, New Campus, Lahore 54590, Pakistan.
Department of Research and Development, Paktex Industries, 2.5 KM Tatlay Road, Kamoke 52470, Pakistan.
Microorganisms. 2024 May 29;12(6):1106. doi: 10.3390/microorganisms12061106.
Species belonging to the genus produce many advantageous extracellular enzymes that have tremendous applications on a commercial scale for the textile, detergent, feed, food, and beverage industries. This study aimed to isolate potent thermo-tolerant amylolytic and cellulolytic bacterium from the local environment. Using the Box-Behnken design of response surface methodology, we further optimized the amylase and cellulase activity. The isolate was identified by 16S rRNA gene sequencing as QY4. This study utilized potato peel waste (PPW) as the biomaterial, which is excessively being dumped in an open environment. Nutritional status of the dried PPW was determined by proximate analysis. All experimental runs were carried out in 250 mL Erlenmeyer flasks containing acid treated PPW as a substrate by the thermos-tolerant QY4 incubated at 37 °C for 72 h of submerged fermentation. Results revealed that the dilute HSO assisted autoclaved treatment favored more amylase production (0.601 IU/mL/min) compared to the acid treatment whereas high cellulase production (1.269 IU/mL/min) was observed in the dilute acid treatment and was found to be very effective compared to the acid assisted autoclaved treatment. The -value, F-value, and coefficient of determination proved the significance of the model. These results suggest that PPW could be sustainably used to produce enzymes, which offer tremendous applications in various industrial arrays, particularly in biofuel production.
该属的物种能产生许多有益的胞外酶,这些酶在纺织、洗涤剂、饲料、食品和饮料行业有着巨大的商业应用价值。本研究旨在从当地环境中分离出高效的耐热淀粉酶和纤维素酶细菌。利用响应面法的Box-Behnken设计,我们进一步优化了淀粉酶和纤维素酶的活性。通过16S rRNA基因测序将该分离株鉴定为QY4。本研究利用马铃薯皮废料(PPW)作为生物材料,这种废料正大量被露天倾倒。通过近似分析确定了干燥PPW的营养状况。所有实验均在250 mL锥形瓶中进行,瓶中装有经酸处理的PPW作为底物,由耐热的QY4在37℃下进行72小时的深层发酵培养。结果表明,与酸处理相比,稀HSO辅助高压灭菌处理更有利于淀粉酶的产生(0.601 IU/mL/min),而在稀酸处理中观察到较高的纤维素酶产量(1.269 IU/mL/min),并且发现与酸辅助高压灭菌处理相比非常有效。-值、F值和决定系数证明了该模型的显著性。这些结果表明,PPW可以可持续地用于生产酶,这些酶在各种工业领域有着巨大的应用,特别是在生物燃料生产中。