荧光假单胞菌、苏云金芽孢杆菌和生物合成纳米银对小白蚁消化系统纤维素酶活性的影响

Shaimaa Hameed Kamel, Rahdi Fadel Al-Jassani, Hazem Idan Al-Shammari
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引用次数: 0

摘要

卡梅尔,s.h., R.F. Al-Jassani和H.A. Al-Shammari。2022. 荧光假单胞菌、苏云金芽孢杆菌和生物合成纳米银对小白蚁消化系统纤维素酶活性的影响植物保护学报,40(4):315-324。https://doi.org/10.22268/AJPP-40.4.315324本研究通过细菌菌株和纳米颗粒处理纤维素培养基,探讨不同菌株和纳米颗粒对白蚁中消化系统纤维素酶活性的影响及其在葡萄糖释放中的作用。紫外光谱分析结果表明,从白蚁、商业荧光拟银和当地的褐飞蛾中分离的荧光拟银合成的纳米银粒子分别在385、324和324 nm波长处具有最高的吸收率。红外光谱(FTIR)显示,酮、胺、烷烃和醇是促成银离子还原、封盖和稳定纳米粒子的基团。用扫描电子显微镜(SEM)测量了颗粒直径,平均为32.43、63.19和57.62 nm。24小时后,用荧光假单胞菌商业分离物制备的银纳米颗粒处理和用荧光假单胞菌分离物处理时,释放葡萄糖的最高浓度分别为0.453 ~ 1.285 mg/ml。72小时后,只有用合成银纳米颗粒处理和用商业荧光假单胞菌分离物处理时,释放糖的最低浓度分别达到0.037至0.730 mg/ml。对照处理的高游离糖量不变,24小时和72小时后分别达到1.70和2.33 mg/ml。除了不同处理对白蚁消化系统纤维素酶抑制率的影响不同外,研究发现,当地分离的腱状芽孢杆菌对纤维素酶的影响优于其他分离的白蚁,抑制率为71.42%。此外,从荧光假单胞菌的商业分离物中合成的银纳米颗粒在抑制酶活性方面优于其他处理,抑制率为78.57%。关键词:荧光假单胞菌;苏云金芽孢杆菌;纳米银
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Pseudomonas fluorescens, Bacillus thuringiensis tenebrionis Isolates and Biologically Synthesized Silver Nanoparticles on Cellulase Enzyme Activity in Workers' Digestive System of the Termite Microcerotermes diversus Silv.
Kamel, S.H., R.F. Al-Jassani and H.A. Al-Shammari. 2022. Effects of Pseudomonas fluorescens, Bacillus thuringiensis tenebrionis Isolates and Biologically Synthesized Silver Nanoparticles on Cellulase Enzyme Activity in Workers' Digestive System of the Termite Microcerotermes diversus Silv. Arab Journal of Plant Protection, 40(4): 315-324. https://doi.org/10.22268/AJPP-40.4.315324 The purpose of this study was to investigate the effect of different bacterial isolates of P. fluorescens and B. t. tenebrionis and silver nanoparticles on the activity of the cellulase enzyme in termites' middle digestive system and its role in glucose release by treating cellulose media with bacterial strains and nanoparticles. Ultraviolet spectroscopy results revealed that silver nanoparticles synthesized by P. fluorescens isolated from termites, commercial P. fluorescens, and local B.t. tenrbrionis had the highest absorption at 385, 324, and 324 nm wave length, respectively. Infrared spectroscopy (FTIR) revealed that ketons, amines, alkanes, and alcohols were among the groups that contributed to silver ions reduction, capping and stabilizing nanoparticles. The particle diameters were measured using a scanning electron microscope (SEM) and found to be on average 32.43, 63.19, and 57.62 nm. The highest concentration of liberated glucose was recorded after 24 hours, which ranged between 0.453 and 1.285 mg/ml when treated with silver nanoparticles prepared from a commercial isolate of P. fluorescens bacteria and when treated with a bacterial isolate P. fluorescens, respectively. Only when treated with synthesized silver nanoparticles and when treated with commercial P. fluorescens isolates did the lowest concentrations of liberated sugar reached between 0.037 and 0.730 mg/ml after 72 hours, respectively. The high quantity of liberated sugar in the control treatment was constant, reaching 1.70 and 2.33 mg/ml after 24 and 72 hours, respectively. In addition to the variation in cellulase enzyme inhibition rates in termite digestive systems due to the effect of different treatments, it was discovered that the local isolate of B. t. tenrbrionis was better than the rest of the isolates in affecting the enzyme, causing inhibition rates of 71.42%. Furthermore, silver nanoparticles synthesized from a commercial isolate of P. fluorescens outperformed other treatments in inhibiting enzyme activity, with an inhibition rate of 78.57% . Keywords: Pseudomonas fluorescens, Bacillus thuringiensis tenebrionis, silver nanoparticles, Microcerotermes diversus
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