Effect of Various Process Parameters on Morphology, Rheology, and Polygalacturonase Production by Aspergillus Sojae in a Batch Bioreactor

dc.contributor.author Öncü, Şelale
dc.contributor.author Tarı, Canan
dc.contributor.author Ünlütürk, Sevcan
dc.coverage.doi 10.1021/bp070079c
dc.date.accessioned 2016-08-15T07:05:01Z
dc.date.available 2016-08-15T07:05:01Z
dc.date.issued 2007
dc.description.abstract The effects of pH, agitation speed, and dissolved oxygen tension (DOT), significant in common fungal fermentations, on the production of polygalacturonase (PG) enzyme and their relation to morphology and broth rheology were investigated using Aspergillus sojae in a batch bioreactor. All three factors were effective on the response parameters under study. An uncontrolled pH increased biomass and PG activity by 27% and 38%, respectively, compared to controlled pH (pH 6) with an average pellet size of 1.69 ± 0.48 mm. pH did not significantly affect the broth rheology but created an impact on the pellet morphology. Similarly, at constant agitation speed the maximum biomass obtained at 500 rpm and at 30 h was 3.27 and 3.67 times more than at 200 and 350 rpm, respectively, with an average pellet size of 1.08 ± 0.42 mm. The maximum enzyme productivity of 0.149 U mL-1 h-1 was obtained at 200 rpm with an average pellet size of 0.71 ± 0.35 mm. Non-Newtonian and pseudoplastic broth rheology was observed at 500 rpm agitation speed, broth rheology exhibited dilatant behavior at the lower agitation rate (200 rpm), and at the medium agitation speed (350 rpm) the broth was close to Newtonian. Furthermore, a DOT range of 30-50% was essential for maximum biomass formation, whereas only 10% DOT was required for maximum PG synthesis. Non-Newtonian shear thickening behavior (n > 1.0) was depicted at DOT levels of 10% and 30%, whereas non-Newtonian shear thinning behavior (n < 1.0) was dominant at 50% DOT. The overall fermentation duration (50-70 h) was considerably shorter compared to common fungal fermentations, revealing the economic feasibility of this particular process. As a result this study not only introduced a new strain with a potential of producing a highly commercially significant enzyme but also provided certain parameters significant in the design and mathematical modeling of fungal bioprocesses. en_US
dc.description.sponsorship İYTE 2004,04 and İYTE 2004,08 en_US
dc.identifier.citation Öncü, Ş., Tarı, C., and Ünlütürk, S. (2007). Effect of various process parameters on morphology, rheology, and polygalacturonase production by Aspergillus sojae in a batch bioreactor. Biotechnology Progress, 23(4), 836-845. doi:10.1021/bp070079c en_US
dc.identifier.doi 10.1021/bp070079c
dc.identifier.doi 10.1021/bp070079c en_US
dc.identifier.issn 8756-7938
dc.identifier.scopus 2-s2.0-34547866530
dc.identifier.uri http://doi.org/10.1021/bp070079c
dc.identifier.uri https://hdl.handle.net/11147/2100
dc.language.iso en en_US
dc.publisher American Institute of Chemical Engineers en_US
dc.relation.ispartof Biotechnology Progress en_US
dc.rights info:eu-repo/semantics/openAccess en_US
dc.subject Enzymes en_US
dc.subject Bacteria en_US
dc.subject Biomass en_US
dc.subject Bioreactors en_US
dc.subject Agitation rate en_US
dc.subject Dissolved oxygen tension en_US
dc.title Effect of Various Process Parameters on Morphology, Rheology, and Polygalacturonase Production by Aspergillus Sojae in a Batch Bioreactor en_US
dc.type Article en_US
dspace.entity.type Publication
gdc.author.institutional Öncü, Şelale
gdc.author.institutional Tarı, Canan
gdc.author.institutional Ünlütürk, Sevcan
gdc.author.yokid 222755
gdc.author.yokid 41331
gdc.author.yokid 44047
gdc.bip.impulseclass C4
gdc.bip.influenceclass C4
gdc.bip.popularityclass C5
gdc.coar.access open access
gdc.coar.type text::journal::journal article
gdc.collaboration.industrial false
gdc.description.department İzmir Institute of Technology. Food Engineering en_US
gdc.description.endpage 845 en_US
gdc.description.issue 4 en_US
gdc.description.publicationcategory Makale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı en_US
gdc.description.scopusquality Q2
gdc.description.startpage 836 en_US
gdc.description.volume 23 en_US
gdc.description.wosquality Q3
gdc.identifier.openalex W2009213914
gdc.identifier.pmid 17585778
gdc.identifier.wos WOS:000248689400010
gdc.index.type WoS
gdc.index.type Scopus
gdc.index.type PubMed
gdc.oaire.accesstype BRONZE
gdc.oaire.diamondjournal false
gdc.oaire.impulse 6.0
gdc.oaire.influence 3.960403E-9
gdc.oaire.isgreen true
gdc.oaire.keywords Time Factors
gdc.oaire.keywords Bacteria
gdc.oaire.keywords Dissolved oxygen tension
gdc.oaire.keywords Carbohydrates
gdc.oaire.keywords Temperature
gdc.oaire.keywords Hydrogen-Ion Concentration
gdc.oaire.keywords Models, Theoretical
gdc.oaire.keywords Enzymes
gdc.oaire.keywords Agitation rate
gdc.oaire.keywords Oxygen
gdc.oaire.keywords Industrial Microbiology
gdc.oaire.keywords Aspergillus
gdc.oaire.keywords Bioreactors
gdc.oaire.keywords Polygalacturonase
gdc.oaire.keywords Fermentation
gdc.oaire.keywords Biomass
gdc.oaire.keywords Stress, Mechanical
gdc.oaire.keywords Rheology
gdc.oaire.keywords Biotechnology
gdc.oaire.popularity 3.5632797E-9
gdc.oaire.publicfunded false
gdc.oaire.sciencefields 0106 biological sciences
gdc.oaire.sciencefields 0301 basic medicine
gdc.oaire.sciencefields 01 natural sciences
gdc.oaire.sciencefields 03 medical and health sciences
gdc.openalex.collaboration National
gdc.openalex.fwci 3.72724088
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gdc.openalex.toppercent TOP 10%
gdc.opencitations.count 23
gdc.plumx.crossrefcites 11
gdc.plumx.mendeley 38
gdc.plumx.pubmedcites 3
gdc.plumx.scopuscites 42
gdc.scopus.citedcount 42
gdc.wos.citedcount 30
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local.message.claim |submit_approve *
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