Indigenous Microbial Community of Barley Greatly Influences Grain Germination and Malt Quality
Аборигенное микробное сообщество ячменя в значительной степени влияет на прорастание зерна и качество солода
2007-01-01
SCID: 54.1/g86dgzdv
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PCR-DGGEbarley maltinggrain germinationmalt qualitymicrobial community
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Abstract (AI)
The present study was carried out to investigate the impacts of bacterial and fungal communities on grain germination and on the malting properties of good-quality two-row barley. In order to suppress the growth of bacterial and/or fungal communities, various antibiotics were added to the first steeping water of barley. This study was also designed to explore the dynamics of the bacterial community in the malting process after antimicrobial treatments by polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE). The diverse microbial community played an active role in the malting ecosystem. Even previously undescribed bacterial species were found in the malting ecosystem. Suppression of the bacterial community mainly consisting of Gram-negative bacteria was advantageous with respect to grain germination and wort separation. In addition, more extract was obtained after antibacterial treatments. The fungal community significantly contributed to the production of microbial β-glucanases and xylanases, and was also involved in proteolysis. An improved understanding of the complex microbial community and its role in malting enables a more controlled process management and the production of high quality malt with tailored properties.
Key Findings
1
Suppressing predominantly Gram-negative bacteria improves grain germination, wort separation, and extract yield after antibacterial treatment.
2
The fungal community contributes microbial β-glucanase and xylanase production and participates in proteolysis during malting.
3
The indigenous bacterial and fungal communities actively shape barley grain germination and malt quality during malting.
4
The malting ecosystem contains diverse bacteria, including previously undescribed bacterial species, revealed through PCR-DGGE community analysis.
5
Understanding malting-associated microbial communities enables more controlled processing and production of malt with tailored quality properties.
Research Object
the indigenous bacterial and fungal communities associated with good-quality two-row barley during malting
Research Subject
their effects on grain germination, wort separation, extract yield, enzyme production, proteolysis, and malt quality during malting
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2007-01-01
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