2006
DOI: 10.1016/j.carbpol.2006.02.030
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High-level production, purification and characterization of a thermostable β-mannanase from the newly isolated Bacillus subtilis WY34

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Cited by 139 publications
(120 citation statements)
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“…Different ability to degrade mannan substrate has been shown by isolate RA05 which was not able to degrade mannan of sugar palm but it had the activity on PKC (Meryandini et al, 2010). Bacillus subtilis WY34 exhibited high activity on galactomannan from LBG (100%), but just 56.8% in Konjac powder, 20.4% in copra mannan and 10.7% in guar gum galactomannan (Jiang et al, 2006). The optimum time of mannanase production was then used as the standard for the harvesting time of bacterial cells crude extract in the following mannanase production.…”
Section: Resultsmentioning
confidence: 99%
“…Different ability to degrade mannan substrate has been shown by isolate RA05 which was not able to degrade mannan of sugar palm but it had the activity on PKC (Meryandini et al, 2010). Bacillus subtilis WY34 exhibited high activity on galactomannan from LBG (100%), but just 56.8% in Konjac powder, 20.4% in copra mannan and 10.7% in guar gum galactomannan (Jiang et al, 2006). The optimum time of mannanase production was then used as the standard for the harvesting time of bacterial cells crude extract in the following mannanase production.…”
Section: Resultsmentioning
confidence: 99%
“…Bacillus spp. mannanases have a molecular mass in the range of 37-40 kDa [20][21][22] . Nevertheless, Takeda et al 23 reported that the purified mannanase from Bacillus sp.…”
Section: Discussionmentioning
confidence: 99%
“…At optimum pH, the structure and active site of an enzyme are in the most suitable condition to bind substrate, resulting in a maximum activity. Microorganism has high diversity in the sensitivity to pH changes, i.e., Streptomyces galbus NR has an optimum pH of 6.5 (Kansoh & Nagieb, 2004), whereas for bacterias, Bacillussubtilis WY34 the optimum pH was 6 (Jiang, 2006). For fungal, Aspergillus niger and Trichoderma spp,the highest activity was found at pH of 5 (Adesina et al, 2013).…”
Section: Mannanase Characterizationmentioning
confidence: 99%
“…It indicates that mannanase belongs to endo-mannanase type. Endo-mananase can degrade mannan polysaccharide to mannotetraose, mannotriose, and mannobiose (Jiang et al, 2006). The gure 3 The effect of temperature on the activity of mannanase Streptomyces violascensBF 3.10 measured at pH 6. gure 4 Mannanase stability of Streptomyces violascensBF 3.10 at different storage temperatures measured at pH 6.…”
Section: Analyzing Mannooligosaccharides By Using Tlc and Hplcmentioning
confidence: 99%