Fermentation of African kale (Brassica carinata) using L. plantarum BFE 5092 and L. fermentum BFE 6620 starter strains.
Fermentation of African kale (Brassica carinata) using L. plantarum BFE 5092 and L. fermentum BFE 6620 starter strains.
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使用植物乳杆菌 BFE 5092 和发酵乳杆菌 BFE 6620 发酵剂菌株发酵非洲羽衣甘蓝(Brassica carinata)。
DOI:
10.1016/j.ijfoodmicro.2016.08.030
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发表时间:
2016
期刊:
影响因子:
--
通讯作者:
C. Franz
中科院分区:
文献类型:
--
作者:
F. Oguntoyinbo;Gyu;B. Trierweiler;Johannes Kabisch;N. Rösch;H. Neve;W. Bockelmann;L. Frommherz;D. Nielsen;L. Krych;C. Franz
Vegetables produced in Africa are sources of much needed micronutrients and fermentation is one way to enhance the shelf life of these perishable products. To prevent post-harvest losses and preserve African leafy vegetables,LactobacillusplantarumBFE 5092 andLactobacillus fermentumBFE 6620 starter strains were investigated for their application in fermentation of African kale (Brassica carinata) leaves. They were inoculated at 1 × 107cfu/ml and grew to a maximum level of 108cfu/ml during 24 h submerged fermentation. The strains utilized simple sugars (i.e., glucose, fructose, and sucrose) in the kale to quickly reduce the pH from pH 6.0 to pH 3.6 within 24 h. The strains continued to produce bothdandllactic acid up to 144 h, reaching a maximum concentration of 4.0 g/l. Fermentations with pathogens inoculated at 104cfu/ml showed that the quick growth of the starters inhibited the growth of Listeria monocytogenes andSalmonellaEnteritidis, as well as other enterobacteria. Denaturing gradient gel electrophoresis and 16S rRNA gene (V3-V4-region) amplicon sequencing showed that in the spontaneous fermentations a microbial succession took place, though with marked differences in biodiversity from fermentation to fermentation. The fermentations inoculated with starters however were clearly dominated by both the inoculated strains throughout the fermentations. RAPD-PCR fingerprinting showed that the strains established themselves at approx. equal proportions. Although vitamins C, B1and B2decreased during the fermentation, the final level of vitamin C in the product was an appreciable concentration of 35 mg/100 g. In conclusion, controlled fermentation of kale offers a promising avenue to prevent spoilage and improve the shelf life and safety.