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Effect of bacteria type and sucrose concentration on levan yield and its molecular weight

机译:细菌类型和蔗糖浓度对莱文产量及其分子量的影响

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Background Levan has been traditionally produced from microorganism. However, there is a continuous effort in looking for new strains that improve levan production yield and uses alternative sugar sources for growth. Despite having a wide range of data about levan yield, there are not papers which allow controlling molecular weight, and that plays an essential role for further applications. Results The effect of the sucrose concentration on levan yield (and its molecular weight) from Bacillus atrophaeus and Acinetobacter nectaris (Gram positive and Gram negative respectively) was studied in this work. It was found that A. nectaris growth (from 3 to 1.5?g?L?1 in 40?h) and its levan production (from 3 to 1.5?g?L?1) decreases by increasing sucrose concentration (best results at a concentration of 120?g?L?1) whereas B. atrophaeus growth (3.5?g?L?1 in 30?h) and its levan production (also 3.5?g?L?1) were not affected by modifying that parameter. Levan molecular weight from A. nectaris decreases by increasing sucrose concentration (from 8000 to 2000?kDa) whereas levan molecular weight from B. Atrophaeus remains always around 50?kDa. By performing a kinetic study, it was shown that A. nectaris growth follows a substrate-inhibition model, whereas Monod equation provided a good fit for B. atrophaeus growth. Finally, wastes from orange juice industry were used as a medium culture to cultivate those microorganism, obtaining good results with B. atrophaeus (growth 3?g?L?1 in 30?h). Conclusions Levan production kinetics was determined and compared between different bacteria types.
机译:背景技术莱​​万传统上是由微生物产生的。但是,人们一直在努力寻找可以提高Levan产量并使用替代糖源进行生长的新菌株。尽管有大量有关levan收率的数据,但没有论文可以控制分子量,并且在进一步应用中起着至关重要的作用。结果研究了蔗糖浓度对萎缩芽孢杆菌和油桃不动杆菌(分别为革兰氏阳性和革兰氏阴性)的莱文产量(及其分子量)的影响。发现油桃曲霉的生长(在40?h中从3升至1.5?g?L ?1 )及其levan产量(从3升至1.5?g?L ?1 < / sup>)随蔗糖浓度的增加而降低(浓度为120?g?L ?1 时的最佳结果),而萎缩芽孢杆菌的生长(3.5?g?L ?1 >在30?h中)和其水平生产(也为3.5?g?L ?1 )不受该参数的影响。通过增加蔗糖浓度(从8000到2000?kDa),来自油桃的Levan分子量会降低,而来自B. Atrophaeus的萎缩菌的Levan分子量始终保持在50?kDa左右。通过进行动力学研究表明,油桃的生长遵循底物抑制模型,而Monod方程非常适合萎缩的细菌的生长。最后,将橙汁工业的废料用作培养基培养这些微生物,并与萎缩芽孢杆菌(B. atrophaeus)(在30?h内生长3?g?L ?1 )取得了良好的效果。结论测定了Levan的生产动力学并比较了不同细菌类型之间的关系。

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