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Studies on peroxidase production and detection of Sporotrichum thermophile-like catalase-peroxidase gene in a Bacillus species isolated from Hogsback forest reserve South Africa

机译:南非霍格斯贝克森林保护区分离的芽孢杆菌中过氧化物酶的产生和嗜热孢子样过氧化氢酶过氧化物酶基因的检测

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摘要

This study sought to determine the process conditions for optimum peroxidase production by a species ( sp. FALADE-1- ) isolated from Hogsback forest reserve in South Africa and characterize the peroxidase gene in the bacteria. We optimized peroxidase production by manipulating the environmental and nutritional parameters under submerged fermentation. Subsequently, the gene encoding heme-peroxidase was determined through nested polymerase chain reaction and Sanger DNA sequencing. The studied bacteria had maximum peroxidase production at pH 8, 30 °C and 150 rpm. The addition of guaiacol to lignin fermentation medium enhanced peroxidase production by over 100 % in the studied bacteria. However, the other lignin monomers (veratryl alcohol, vanillin, vanillic acid and ferulic acid) repressed the enzyme activity. Modification of the fermentation medium with ammonium sulphate gave the maximum peroxidase yield (8.87 U mL ). Under the predetermined culture conditions, sp. FALADE-1 expressed maximum specific peroxidase activity at 48 h (8.32 U mg ). Interestingly, a search of the sequenced gene in PeroxiBase showed 100% similarity to catalase-peroxidase gene ( ), as well, the deduced protein sequence clustered with bacterial catalase-peroxidases and had a molecular weight of about 11.45 kDa with 7.01 as the estimated isoelectric point. Subsequently, the nucleotide sequence was deposited in the National Center for Biotechnology Information (NCBI) repository with the accession number . In conclusion, sp. FALADE-1 is a promising candidate for improved peroxidase production.
机译:这项研究试图确定从南非Hogsback森林保护区分离出的一个物种(sp。FALADE-1-)最佳生产过氧化物酶的工艺条件,并鉴定细菌中的过氧化物酶基因。我们通过控制深层发酵条件下的环境和营养参数来优化过氧化物酶的生产。随后,通过巢式聚合酶链反应和Sanger DNA测序确定编码血红素过氧化物酶的基因。所研究的细菌在pH 8、30°C和150 rpm时具有最大的过氧化物酶生成量。在木质素发酵培养基中添加愈创木酚可以使研究细菌的过氧化物酶产量提高100%以上。但是,其他木质素单体(藜芦醇,香兰素,香草酸和阿魏酸)抑制了酶的活性。用硫酸铵对发酵培养基进行改性得到最大的过氧化物酶产率(8.87UmL)。在预定的培养条件下,sp。 FALADE-1在48 h(8.32 U mg)表达最大比过氧化物酶活性。有趣的是,在PeroxiBase中对测序基因的搜索显示出与过氧化氢酶过氧化物酶基因()的100%相似性,并且推导的蛋白质序列与细菌过氧化氢酶过氧化物酶成簇,其分子量约为11.45 kDa,估计等电点为7.01。点。随后,核苷酸序列以登录号保藏在美国国家生物技术信息中心(NCBI)信息库中。总之,sp。 FALADE-1是改善过氧化物酶生产的有希望的候选者。

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