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首页> 外文期刊>Food Science and Technology (Campinas) >Produ??o de poligalacturonase, pelo termofílico Bacillus sp. e algumas de suas propriedades
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Produ??o de poligalacturonase, pelo termofílico Bacillus sp. e algumas de suas propriedades

机译:通过热嗜热芽孢杆菌生产多格术。他们的一些物业

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Polygalacturonase production by thermophilic Bacillus sp strain SMIA-2 cultivated in liquid media containing citrus pectin as a carbon source reached the maximum activity at 30 hour with levels of 42 IU.mL-1. Among the various organic and inorganic nitrogen sources, ammonium sulphate was found to be the best for the enzyme secretion. An increase in the citrus pectin concentration in the medium of more than 0.5% did not enhance enzyme synthesis. The microorganism was capable of utilizing a wide range of carbon sources, but the activity of poligalacturonase varied depending on the carbon source. Apple's pectin was the best carbon source in the present study for polygalacturonase secretion (56 IU.mL-1) while fructose and maltose were not very effective. Rafinose and glucose inhibited the enzyme synthesis. Studies on the polygalacturonase characterization revealed that the optimum temperature of this enzyme was 70 oC and that it maintained 62 and 58% of its activity when incubated at 40 oC and 90 oC for 2 hour, respectively. The optimum pH of the enzyme was found to be 7.0. The enzyme maintained 90% and 75% of its maximal activity when incubated at pH 8.0 and 8.5 for 24 hour at room temperature, respectively. The enzyme activity was enhanced in the presence of Mg2+ and Zn2+. On the other hand, the activity was inhibited in the presence of Cs+2, Hg+2, Li+2 and Sr+2.
机译:在含有柑橘蛋白的液体培养基中培养的嗜热性芽孢杆菌菌株Sp菌株Smia-2作为碳源达到30小时的最大活性,水平为42μm-1。在各种有机和无机氮源中,发现硫酸铵是最适合酶分泌的。在大于0.5%的培养基中柑橘果胶浓度的增加并未增强酶合成。微生物能够利用广泛的碳源,但Poligalactulon酶的活性根据碳源而变化。 Apple的果胶是本研究中的碳源的最佳碳源(56 IU.ML-1),而果糖和麦芽糖不是非常有效的。 Rafinose和葡萄糖抑制酶合成。关于多肢乳突酶表征的研究表明,该酶的最佳温度为70℃,并且当在40℃至90℃温育2小时时,它保持62和58%的活性。发现酶的最佳pH为7.0。当在pH8.0和8.5在室温下孵育24小时时,酶在其温育24小时时保持90%和75%的最大活动。在Mg 2+和Zn2 +存在下提高酶活性。另一方面,在CS + 2,Hg + 2,Li + 2和Sr + 2存在下抑制活性。

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