Details

Prilagojenost kvasovke Hanseniaspora valbyensis na fermentativna okolja
ID Staver, Lana (Author), ID Čadež, Neža (Mentor) More about this mentor... This link opens in a new window, ID Paš, Maja (Comentor)

.pdfPDF - Presentation file, Download (2,77 MB)
MD5: 3875F6DD2DD8DB401D919D884F1F3E8A

Abstract
V magistrskem delu smo raziskali fenotipsko raznolikost 18 sevov kvasovk rodu Hanseniaspora ter povezavo med njihovimi genetskimi lastnostmi, hitrostjo rasti in produkcijo primarnih metabolitov. Seve smo gojili v aerobnih in anaerobnih pogojih ter določili parametre rasti, velikost celic, sposobnost sporulacije in koncentracije primarnih metabolitov - glicerola, ocetne kisline in etanola. Vsi sevi so v aerobnih pogojih rasli hitreje kot v anaerobnih, medtem ko so v anaerobnih pogojih proizvedli višje koncentracije etanola in glicerola ter nižje koncentracije ocetne kisline, kar kaže na ohranjen fermentativni metabolizem. Med ozko sorodnima vrstama Hanseniaspora smithiae in Hanseniaspora valbyensis nismo ugotovili statistično značilnih razlik v hitrosti rasti, vendar je H. valbyensis proizvedla več etanola. Le nekateri sevi vrste H. valbyensis so bili sposobni fermentacije v aerobnih razmerah, kar nakazuje na Crabtree učinek pri teh sevih. Med velikostjo genoma in hitrostjo rasti v aerobnih pogojih smo opazili trend pozitivne korelacije, saj so sevi z večjim genomom praviloma rasli hitreje in proizvedli manj etanola. Analiza genomskih podatkov je pokazala tudi, da prisotnost oz. organizacija mitohondrijskih genov COX1, COX2 in COX3 ni povezana s sposobnostjo tvorbe askospor pri sevih rodu Hanseniaspora. Rezultati kažejo, da je razpoložljivost kisika glavni dejavnik, ki vpliva na hitrost rasti in produkcijo primarnih metabolitov preučevanih sevov, medtem ko genomska raznolikost pomembno prispeva k njihovi fenotipski raznolikosti.

Language:Slovenian
Keywords:Hanseniaspora valbyensis, kvasovke, fenotipska raznolikost, primarni metaboliti, fermentativni metabolizem, velikost genoma, sporulacija
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:BF - Biotechnical Faculty
Publisher:[L. Staver]
Year:2026
PID:20.500.12556/RUL-186242 This link opens in a new window
UDC:579.22/.26:582.28.23
COBISS.SI-ID:289394435 This link opens in a new window
Publication date in RUL:29.08.2026
Views:109
Downloads:18
Metadata:XML DC-XML DC-RDF
:
Copy citation
Share:Bookmark and Share

Secondary language

Language:English
Title:Adaptability of Hanseniaspora valbyensis yeasts to fermentative environments
Abstract:
In this master's thesis, we investigated the phenotypic diversity of 18 yeast strains belonging to the genus Hanseniaspora and the relationship between their genomic characteristics, growth rate and the production of primary metabolites. The strains were cultivated under aerobic and anaerobic conditions, and growth parameters, cell size, sporulation ability and the concentrations of glycerol, acetic acid and ethanol were determined. All strains exhibited faster growth under aerobic conditions than under anaerobic conditions, while anaerobic cultivation resulted in increased ethanol and glycerol production and decreased acetic acid production, indicating that all strains retained fermentative metabolism. No statistically significant differences in growth rate were observed between the closely related Hanseniaspora smithiae and Hanseniaspora valbyensis. However, H. valbyensis produced higher amounts of ethanol under anaerobic conditions. Increased ethanol production under aerobic conditions was observed in some H. valbyensis strains, suggesting the Crabtree effect. A positive correlation between genome size and maximum specific growth rate was observed. Strains possessing larger genomes grew faster and produced less ethanol under aerobic conditions. Analysis of genomic data also showed that the presence or organization of the mitochondrial genes COX1, COX2 and COX3 was not associated with the ability to form ascospores. The results indicate that oxygen availability is the primary factor affecting growth and primary metabolite production in the studied strains, while genomic diversity contributes to the observed phenotypic diversity.

Keywords:Hanseniaspora valbyensis, yeasts, phenotypic diversity, primary metabolites, fermentative metabolism, genome size, sporulation

Similar documents

Similar works from RUL:
Similar works from other Slovenian collections:

Back