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Variation Among Japanese Miso Breweries in Indoor Microbiomes is Mainly Ascribed to Variation in Type of Indoor
Roger T Koide1, Makoto Kanauchi2, Yasushi Hashimoto3
1Department of Biology, Brigham Young University, Provo, UT, USA. rogerkoide@gmail.com.
Abstract:
Miso is a microbially-fermented soybean food. The miso brewery indoor microbiome contributes to miso fermentation. Japanese breweries are not climate-controlled, so indoor spaces are strongly affected by the prevailing climate. Because climate influences microorganism distribution, our first hypothesis is that latitude, as a proxy for climate, is a major determinant of brewery indoor microbiome structure. Breweries vary in interior surface materials and in the way operations (steaming, processing, fermenting) are apportioned among rooms. Therefore, our second hypothesis is that more variability in indoor microbiomes exists among breweries than can be ascribed to a latitudinal gradient. Most miso produced today is inoculated with commercial microbial strains to standardize fermentation. If commercial strains outcompete indigenous microbes for membership in the indoor microbiome, this practice may homogenize indoor microbiomes among regions or breweries. Therefore, our third hypothesis is that inoculant fungal species dominate indoor fungal communities and make it impossible to distinguish communities among breweries or across their latitudinal gradient. We tested these hypotheses by sampling indoor surfaces in several breweries across a latitudinal gradient in Japan. We found that latitude had a significant but relatively small impact on indoor fungal and bacterial communities, that the effect of brewery was large relative to latitude, and that inoculant fungi made such small contributions to the indoor microbiome that distinctions among breweries and along the latitudinal gradient remained apparent. Recently, the Japanese Ministry of Agriculture, Forestry and Fisheries specified fungal inoculants to standardize miso production. However, this may not be possible so long as the indoor microbiome remains uncontrolled.
Insights
The indoor microbiome of miso breweries is influenced more by individual brewery characteristics than by latitude. Commercial fungal inoculants do not dominate the microbiome, allowing for regional distinctions in miso fermentation.
Area of Science:
- Microbiology
- Food Science
- Environmental Science
Background:
- Miso fermentation relies on the indoor microbiome of breweries.
- Japanese breweries lack climate control, making them susceptible to climate variations.
- Microorganism distribution is influenced by climate, suggesting latitude may affect brewery microbiomes.
Purpose of the Study:
- To investigate the influence of latitude and brewery-specific factors on the indoor microbiome structure of miso breweries.
- To determine if commercial microbial inoculants homogenize indoor microbiomes.
- To assess the distinctiveness of brewery microbiomes across a latitudinal gradient.
Main Methods:
- Sampling of indoor surfaces in multiple miso breweries across Japan.
- Analysis of fungal and bacterial communities within the brewery environments.
- Comparison of microbiome structures in relation to latitude and brewery characteristics.
Main Results:
- Latitude had a significant but minor impact on fungal and bacterial communities.
- Brewery-specific effects on the microbiome were more substantial than latitudinal effects.
- Inoculant fungi comprised a small fraction of the indoor microbiome, preserving distinctions between breweries and regions.
Conclusions:
- Brewery-specific factors are primary drivers of indoor microbiome composition in miso production.
- The use of commercial inoculants does not appear to homogenize the microbiome across breweries or latitudes.
- Regional distinctions in miso brewery microbiomes persist, challenging standardization efforts through controlled inoculation alone.

