木二糖
货号:O-XBI
包装:50 mg
包装:50 mg
Megazyme 木二糖, Xylobiose, (O-XBI), CASN: 6860-47-5, 50mg, 用于研究、酶生化分析和体外诊断分析。
产品详情质检信息
木二糖, Xylobiose, 货号:O-XBI
品牌:Megazyme
货号:O-XBI
中文品名:木二糖
品名:Xylobiose
CASN:6860-47-5
纯度: >95%
包装: 50 mg
来源:控制阿拉伯木聚糖的酶法水解制得。
用途:高纯度木二糖用于研究、酶生化分析和体外诊断分析。
参考文献:
A Comparison of Polysaccharide Substrates and Reducing Sugar Methods for the Measurement of endo-1,4-β-Xylanase McCleary, B. V. & McGeough, P. (2015). Appl. Biochem. Biotechnol., 177(5), 1152-1163.
Versatile high resolution oligosaccharide microarrays for plant glycobiology and cell wall research. Pedersen, H. L., Fangel, J. U., McCleary, B., Ruzanski, C., Rydahl, M. G., Ralet, M. C., Farkas, V., Von Schantz, L., Marcus, S. E., Andersen, M.C. F., Field, R., Ohlin, M., Knox, J. P., Clausen, M. H. & Willats, W. G. T. (2012). Journal of Biological Chemistry, 287(47), 39429-39438.
Modulation of cellulosome composition in Clostridium cellulolyticum: Adaptation to the polysaccharide environment revealed by proteomic and carbohydrate‐active enzyme analyses. Blouzard, J. C., Coutinho, P. M., Fierobe, H. P., Henrissat, B., Lignon, S., Tardif, C., Pages, S. & de Philip, P. (2010). Proteomics, 10(3), 541-554.
Identification and characterization of plant cell wall degrading enzymes from three glycoside hydrolase families in the cerambycid beetle Apriona japonica. Pauchet, Y., Kirsch, R., Giraud, S., Vogel, H. & Heckel, D. G. (2014). Insect Biochemistry and Molecular Biology, 49, 1-13.
Comprehensive multidetector HPSEC study on solution properties of cereal arabinoxylans in aqueous and DMSO solutions. Pitkanen, L., Virkki, L., Tenkanen, M. & Tuomainen, P. (2009). Biomacromolecules, 10(7), 1962-1969.
Mode of action of glycoside hydrolase family 5 glucuronoxylan xylanohydrolase from Erwinia chrysanthemi. Vršanská, M., Kolenová, K., Puchart, V. & Biely, P. (2007). FEBS Journal, 274(7), 1666-1677.
Activity of an Aspergillus terreus α-arabinofuranosidase on phenolic-substituted oligosaccharides. Luonteri, E., Kroon, P. A., Tenkanen, M., Teleman, A. & Williamson, G. (1999). Journal of Biotechnology, 67(1), 41-48.
Production of xylobiose from the autohydrolysis explosion liquor of corncob using Thermotoga maritima ylanase B (XynB) immobilized on nickel-chelated Eupergit C. Tan, S. S., Li, D. Y., Jiang, Z. Q., Zhu, Y. P., Shi, B. & Li, L. T. (2008). Bioresource Technology, 99(1), 200-204.
Evidence for the presence of arabinoxylan hydrolysing enzymes in European wheat flours. Cleemput, G., Bleukx, W., Van Oort, M., Hessing, M. & Delcour, J. A. (1995). Journal of Cereal Science, 22(2), 139-145.
Extractive bioconversion of xylan for production of xylobiose and xylotriose using a PEG6000/sodium citrate aqueous two-phase system. Li, X., Lian, Z., Dong, B., Xu, Y., Yong, Q. & Yu, S. (2011). Korean Journal of Chemical Engineering, 28(9), 1897-1901.
Purification and characterization of Thermobifida fusca xylanase 10B. Kim, J. H., Irwin, D. & Wilson, D. B. (2004). Canadian Journal of Microbiology, 50(10), 835-843.
Xylanase, β-glucanase, and other side enzymatic activities have greater effects on the viscosity of several feedstuffs than xylanase and β-glucanase used alone / in combination. Mathlouthi, N., Saulnier, L., Quemener, B. & Larbier, M. (2002). Journal of Agricultural and Food Chemistry, 50(18), 5121-5127.
In vitro fermentation of cereal dietary fibre carbohydrates by probiotic and intestinal bacteria. Crittenden, R., Karppinen, S., Ojanen, S., Tenkanen, M., Fagerström, R., Mättö, J., Saarela, M., Mattila-Sandholm, T. & Poutanen, K. (2002). Journal of the Science of Food and Agriculture, 82(8), 781-789.
使用手册:
O-XBI 使用手册
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