Milk kefir: ultrastructure, antimicrobial activity and efficacy on aflatoxin B1 production by Aspergillus flavus
Ahmed A Ismaiel1, Mohamed F Ghaly, Ayman K El-Naggar
1Department of Botany and Microbiology, Faculty of Science, Zagazig University, Zagazig, Egypt. microbiologist_80@yahoo.com
Abstract:
The association of kefir microbiota was observed by electron microscopic examination. Scanning electron microscopic (SEM) observations revealed that kefir grain surface is very rough and the inner portions had scattered irregular holes on its surface. The interior of the grain comprised fibrillar materials which were interpreted as protein, lipid and a soluble polysaccharide, the kefiran complex that surrounds yeast and bacteria in the grain. Yeast was observed more clearly than bacteria on the outer portion of the grain. Transmission electron microscopic (TEM) observations of kefir revealed that the grain comprised a mixed culture of yeast and bacteria growing in close association with each other. Microbiota is dominated by budded and long-flattened yeast cells growing together with lactobacilli and lactococci bacteria. Bacterial cells with rounded ends were also observed in this mixed culture. Kefir grains, kefir suspensions, and kefiran were tested for antimicrobial activities against several bacterial and fungal species. The highest activity was obtained against Streptococcus faecalis KR6 and Fusarium graminearum CZ1. Growth of Aspergillus flavus AH3 producing for aflatoxin B1 for 10 days in broth medium supplemented with varying concentrations of kefir filtrate (%, v/v) showed that sporulation was completely inhibited at the higher concentrations of kefir filtrate (7-10%, v/v). The average values of both mycelial dry weights and aflatoxin B1 were completely inhibited at 10% (v/v). This is the first in vitro study about the antifungal characteristics of kefir against filamentous fungi which was manifested by applying its inhibitory effect on the productivity of aflatoxin B1 by A. flavus AH3.
Insights
Kefir microbiota, composed of yeast and bacteria, exhibits significant antimicrobial properties. This study demonstrates kefir
Area of Science:
- Microbiology
- Mycology
- Food Science
Background:
- Kefir is a fermented milk drink produced by kefir grains.
- Kefir grains harbor a complex microbial community, primarily yeast and bacteria.
- The antimicrobial properties of kefir are not fully understood.
Purpose of the Study:
- To investigate the microbial structure of kefir grains using electron microscopy.
- To evaluate the antimicrobial activity of kefir against bacterial and fungal species.
- To assess the effect of kefir on aflatoxin B1 production by Aspergillus flavus.
Main Methods:
- Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were used to examine kefir grain structure.
- Antimicrobial activity assays were performed on kefir grains, suspensions, and kefiran.
- The impact of kefir filtrate on Aspergillus flavus growth and aflatoxin B1 production was assessed in vitro.
Main Results:
- SEM and TEM revealed a complex microbial structure within kefir grains, with yeast and bacteria in close association.
- Kefir exhibited significant antimicrobial activity against Streptococcus faecalis and Fusarium graminearum.
- Kefir filtrate completely inhibited Aspergillus flavus sporulation, mycelial dry weight, and aflatoxin B1 production at concentrations of 7-10%.
Conclusions:
- Kefir grains possess a distinct microbial architecture.
- Kefir demonstrates broad-spectrum antimicrobial activity against bacteria and fungi.
- Kefir exhibits potent in vitro antifungal properties, inhibiting aflatoxin B1 production by Aspergillus flavus.
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