Quinoa dough fermentation by <i>Saccharomyces cerevisiae</i> and lactic acid bacteria: Changes in saponin, phytic acid content, and antioxidant capacity
Sanaz Arjmand, Neda Mollakhalili‐Meybodi, Fateme Akrami Mohajeri, Farzan Madadizadeh, Elham Khalili Sadrabad
Food Science & Nutrition
Abstract
The effects of two fermentation processes (common fermentation with <i>Saccharomyces cerevisiae</i> and fermentation by <i>Lacticaseibacillus casei</i> subsp. <i>casei</i> PTCC 1608 and <i>Lactiplantibacillus plantarum</i> subsp. <i>plantarum</i> PTCC 1745) on pH, titratable acidity, total phenolic and flavonoid contents, antioxidant capacity, saponin content, as well as phytic acid content of quinoa dough were investigated during the 24-h fermentation (4-h interval). According to the results, the highest titratable acidity was observed in the samples fermented by <i>L. casei</i> subsp. <i>casei</i>. Moreover, the highest antioxidant capacity was observed after 12 h of fermentation by <i>L. plantarum</i> subsp. <i>plantarum</i> (31.22% for DPPH, 104.67% for FRAP) due to a higher concentration of phenolic compounds produced (170.5% for total phenolic content). Also, all samples have been able to reduce saponin by 67% on average. Furthermore, the samples fermented by <i>L. plantarum</i> subsp. <i>plantarum</i> showed the most significant decrease in phytic acid content (64.64%) during 24-h fermentation. By considering the reduction of the antinutritional compounds and improvement in the antioxidant properties of quinoa flour, the <i>Lactiplantibacillus plantarum</i> strain was recommended.
Extracted Claims
5 claims extracted from this paper into the knowledge graph
fermentation by Lacticaseibacillus casei subsp. casei resulted in the highest titratable acidity
“the highest titratable acidity was observed in the samples fermented by L. casei subsp. casei”
fermentation reduced saponin by 67% on average
“all samples have been able to reduce saponin by 67% on average”
fermentation by Lactiplantibacillus plantarum subsp. plantarum resulted in a higher concentration of phenolic compounds produced (170.5% for total phenolic content)
“due to a higher concentration of phenolic compounds produced (170.5% for total phenolic content)”