Biological Sciences Program, Federal University of Pernambuco, Recife 50670-901, PE, Brazil.
Molecules. 2013 Aug 22;18(9):10095-107. doi: 10.3390/molecules180910095.
Studies were carried out with Cunninghamella elegans UCP/WFCC 0542 to evaluate the effects of an abundant supply of amino acids, asparagine and corn steep liquor associated with sucrose on the production of biomass and chitosan by submerged fermentation. The concentrations of the components of the culture medium which were determined by a 2³ full factorial design evaluated the interactions and effects of the independent variables of the sucrose, asparagine and corn steep liquor in relation to carbon and nitrogen sources, on the production of chitosan regarding biomass. The best results were observed at the central point [asparagine 0.025%, sucrose 0.15% and 0.45% of corn steep liquor, ratio C:N=2:6], and produced maximum yields of 16.95 g/L biomass and 2.14 g/L chitosan, after 96 h of submerged fermentation. However, the lowest level of sucrose, asparagine and corn steep liquor produced a low amount of biomass (10.83 g/L) and chitosan (0.60 g/L). The infrared spectrum absorption of the chitosan produced by C. elegans showed bands regarding OH-axial stretching between 3406 and 3432 cm⁻¹, superimposed on the NH stretching band with axial deformation of the amide C=O group at about 1639 cm⁻¹, NH angular deformation at approximately 1560 cm⁻¹; axial deformation of amide-CN at around 1421 cm⁻¹, symmetrical angular deformation in CH3 at 1379 cm⁻¹, -CN axial deformation of amino groups from 1125 to 1250 cm⁻¹ and polysaccharide structure bands in the range of between 890-1150 cm⁻¹. The crystallinity index of chitosan was 60.92%, and its degree of deacetylation was 75.25%. A low percentage of a supply of sucrose and asparagine with corn steep liquor offered higher yields of biomass and chitosan production at low cost.
采用异常汉逊酵母 UCP/WFCC 0542 进行研究,评估在丰富的氨基酸(天冬酰胺和玉米浆)供应以及与蔗糖相关联的情况下,对生物量和壳聚糖的深层发酵生产的影响。通过 2³ 完全因子设计确定培养基成分的浓度,评估蔗糖、天冬酰胺和玉米浆的各独立变量与碳源和氮源之间的相互作用和影响,以及对生物量相关的壳聚糖的生产。在中心点[天冬酰胺 0.025%,蔗糖 0.15%和 0.45%的玉米浆,C:N 比为 2:6]观察到最佳结果,96 小时的深层发酵后,生物量的最大产率为 16.95 g/L,壳聚糖的最大产率为 2.14 g/L。然而,蔗糖、天冬酰胺和玉米浆的最低水平产生了较少的生物量(10.83 g/L)和壳聚糖(0.60 g/L)。异常汉逊酵母产生的壳聚糖的红外光谱吸收显示,在 3406 和 3432 cm⁻¹ 之间的 OH-轴向伸展带,叠加在酰胺 C=O 基团的 NH 伸展带的轴向变形上,约为 1639 cm⁻¹,NH 角变形约为 1560 cm⁻¹;酰胺-CN 的轴向变形约为 1421 cm⁻¹,CH3 的对称角变形约为 1379 cm⁻¹,-CN 氨基的轴向变形在 1125 至 1250 cm⁻¹ 之间,多糖结构带在 890-1150 cm⁻¹ 范围内。壳聚糖的结晶度指数为 60.92%,脱乙酰度为 75.25%。低浓度的蔗糖和天冬酰胺与玉米浆的供应可在低成本下提供更高的生物量和壳聚糖产量。