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Exo- and endoglucanase production by Curvularia affinis using bean (Phaseolus vulgaris L.) waste biomass

机译:通过豆豆(Phaveolusulus vulgaris L.)废物生物量的曲率和内葡聚糖酶产生

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Background In many countries, agricultural residues are generated in large quantities, and most of these are underutilized and considered waste, especially in developing countries. Result In this study, Curvularia affinis was isolated from the leaves of Phaseolus vulgaris L. beans and identified using 18S rRNA sequencing. C. affinis was tested for exo- and endoglucanase production using biomass of bean waste compared with the use of microcrystalline cellulose (MCC) and carboxymethylcellulose (CMC) as its growth substrates. C. affinis was better able to produce exo- and endoglucanase enzymes on bean waste biomass than on MCC and CMC. The highest activities of exo- and endoglucanase were detected with substrate concentrations 2% using MCC or CMC and with 4% using bean waste. The optimum incubation period for enzymes activity was 6 days with MCC or CMC (activity was 5.90 and 2.99 U/g of exoglucanase and endoglucanase, respectively) and 8 days with bean waste where activity was 3.64 U/g and 0.92 U/g of exoglucanase and endoglucanase, respectively. Exo- and endoglucanase production showed the highest activity at pH 5-6. In process wherein surfactant (Tween 80) was used, the exoglucanase activity gradually increased from 5.92 U/g to 6.20 U/g and then decreased to 5.70 U/g at 0.50% compared with that using the MCC substrate. The exoglucanase activity gradually increased from 3.80 U/g at 0.0% to 4.12 U/g at 0.20% and then decreased to 3.01 U/g at 0.50% Tween 80 using bean waste. Pretreated bean biomass also yielded higher enzyme production than the non-pretreated biomass. Alkaline-pretreated biomass showed the highest enzyme production compared with acid-treated residues, followed by the H_2O_2-treated ones. Conclusion The study concluded that C. affinis produce exo- and endoglucanase enzymes using cheap and abundant biomass of beans. Moreover, optimization of enzymes indicated that pretreatment of biomass bean biomass is a good choice process for enhanced enzymes productivity.
机译:在许多国家的背景下,农业残留量大量产生,大部分都是未充分利用并考虑废物,特别是在发展中国家。结果在本研究中,曲面染发剂与去除豆豆L.豆类的叶子分离,并使用18S rRNA测序鉴定。与使用微晶纤维素(MCC)和羧甲基纤维素(CMC)作为其生长底物相比,使用豆类废物的生物量测试Affinis进行eAC-和内切葡聚糖酶生产。 C. Affinis能够更好地能够在豆废料生物量和CMC上生产豆类废物生物量的外葡聚糖酶。使用MCC或CMC使用底物浓度2%检测exo-和内切葡聚糖酶的最高活性,并使用豆类废物,4%。酶活性的最佳孵育时间为6天,MCC或CMC(活性为5.90和2.99 U / Exoglucanase和内切葡聚糖酶)和8天用豆类废物,其中活性为3.64 U / g和0.92 U / g外葡聚糖酶和内切葡聚糖酶分别。 exo-和内切葡聚糖酶生产显示pH 5-6的最高活性。在使用表面活性剂(吐温80)的过程中,与使用MCC衬底相比,外葡聚糖酶活性逐渐从5.92 u / g逐渐增加至6.20u / g,然后将0.50%降至5.70 u / g。外葡聚糖酶活性在0.0%至4.12 u / g以0.20%的0.20%逐渐增加,然后使用豆类废物在0.50%吐温80下降至3.01 u / g。预处理的豆生物质也产生比未预处理的生物质产生更高的酶产生。与酸处理的残基相比,碱预处理的生物质显示出最高的酶生产,其次是H_2O_2处理的残余物。结论该研究得出结论,C. Affinis使用廉价和丰富的豆类生产Exo-和内切葡聚糖酶。此外,酶的优化表明,生物质豆生物质的预处理是增强酶生产率的良好选择方法。

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