Effects of substrates and reaction conditions on production of cyclodextrins using cyclodextrin glucanotransferase from newly isolated Bacillus agaradhaerens KSU-A11
Electron. j. biotechnol
;
14(5): 4-4, Sept. 2011. ilus, tab
Article
Dans Anglais
| LILACS
| ID: lil-640511
ABSTRACT
The effects of reaction conditions on cyclodextrins (CDs) production by CGTase from newly isolated Bacillus agaradhaerens KSU-A11 is reported. Among six types of starch tested, potato starch gave highest starch conversion into CDs. In addition, CDs yield was about three fold higher when using gelatinized potato starch in comparison to raw starch. The total CDs production was increased with increasing pH, showing maximum starch conversion at pH 10. Furthermore, the proportion of gamma-CD was relatively higher under slightly acidic-neutral conditions than at alkaline pH with a maximum proportion of 35.6 percent at pH 7 compared to 7.6 percent at pH 10. Maximum starch conversion into CDs was seen at reaction temperature of 55ºC. Lower reaction temperature led to higher proportion of gamma-CD with maximum percentage at 35ºC. Cyclization reaction was significantly promoted in the presence CaCl2 (10 mM), while in the presence of ethyl alcohol there was significant decrease in CD production particularly at high concentration. beta-CD was the major product up to 1 hr reaction period with traces of alpha-CD and no detectable gamma-CD. However, as the reaction proceed, gamma-CD started to be synthesised and alpha-CD concentration increased up to 4 hrs, where the CDs ratios were 0.270.650.07 for alpha-CDbeta-CDgamma-CD, respectively. In addition, optimum CGTase/starch ratio was obtained at 80 U/g starch, showing highest starch conversion into CDs. All the parameters involved have been shown to affect the products yield and/or specificity of B. agaradhaerens KSU-A11 CGTase.
Texte intégral:
Disponible
Indice:
LILAS (Amériques)
Sujet Principal:
Bacillus
/
Cyclodextrines
/
Glucosyltransferases
langue:
Anglais
Texte intégral:
Electron. j. biotechnol
Thème du journal:
Biotechnologie
Année:
2011
Type:
Article
/
descriptif de projet
Pays d'affiliation:
Arabie saoudite
Institution/Pays d'affiliation:
King Saud University/SA
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