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1.
Chinese Journal of Biotechnology ; (12): 1190-1197, 2020.
Artigo em Chinês | WPRIM | ID: wpr-826859

RESUMO

Clostridia inhabiting in jiupei and pit mud plays key roles in the formation of flavour during the fermentation process of Luzhou-flavour baijiu. However, the differences of Clostridial communities between jiupei and pit mud remains unclear. Here, the species assembly, succession, and metabolic capacity of Clostridial communities between jiupei and pit mud were analysed by high-throughput sequencing and pure culture approaches. The ratio of Clostridial biomass to bacterial biomass in the pit mud was relatively stable (71.5%-91.2%) throughout the fermentation process. However, it varied widely in jiupei (0.9%-36.5%). The dominant Clostridial bacteria in jiupei were Clostridium (19.9%), Sedimentibacter (8.8%), and Hydrogenispora (7.2%), while Hydrogenispora (57.2%), Sedimentibacter (5.4%), and Caproiciproducens (4.9%) dominated in the Clostridial communities in pit mud. The structures of Clostridial community in pit mud and jiupei were significantly different (P=0.001) throughout fermentation. Isolated Clostridial strains showed different metabolic capacities of volatile fatty acids in pure culture. Spatial and temporal heterogeneity of Clostridial communities existed in the baijiu fermentation pit, which was closely related to the main flavour components of Luzhou-flavour baijiu.


Assuntos
Bebidas Alcoólicas , Microbiologia , Bactérias , Classificação , Metabolismo , Clostridium , Fisiologia , Ácidos Graxos Voláteis , Metabolismo , Fermentação , Microbiologia de Alimentos
2.
Chinese Journal of Biotechnology ; (12): 2635-2643, 2020.
Artigo em Chinês | WPRIM | ID: wpr-878517

RESUMO

Multi-species solid-state fermentation in a mud pit is one of the typical features of strong-flavor baijiu, in which archaea plays important roles, however, the archaeal community distribution and diversity during fermentation are still lack of research. The biomass, composition and succession of archaea communities in fermented grains and pit mud were analyzed by high throughput sequencing. The potential interaction between archaea and bacteria was analyzed by co-occurrence network. Results demonstrate that the average biomass of archaea in pit mud was about 200 times higher than that of fermented grains. There was no significant difference in archaeal community structure between fermented grains and pit mud (r=0.017, P=0.074), but succession patterns between them showed significant correlation (r=0.30, P=0.03). Methanobacterium was the most abundant archaea in fermented grains and pit mud, and other dominant groups included Methanosarcina, Methanocorpusculum, Methanoculleus, and Methanobrevibacter. The co-occurrence network analysis showed that Methanobacterium was positively correlated with most bacteria in fermented grains and pit mud, especially with Hydrogenispora and Caproiciproducens, the dominant bacteria in pit mud. Our results revealed the temporal and spatial distribution characteristics and potential functions of the archaeal community in the mud pit of strong-flavor baijiu.


Assuntos
Bebidas Alcoólicas/análise , Archaea/genética , Bactérias , Fermentação , Paladar
3.
Chinese Pharmacological Bulletin ; (12)1986.
Artigo em Chinês | WPRIM | ID: wpr-567634

RESUMO

Aim To explore the effects of astragaloside(AS)on the proliferation of neural stem cells(NSCs).Methods The NSCs of embryonic day(E)16 SD rat were cultured in vitro.The NSCs were identified by the immunocytochemical(ICC)staining of Nestin.The ICC staining of BrdU was adopted to characterize the proliferation of NSCs.The number of neurospheres and the ICC staining of BrdU were performed to identify their proliferation properties.Real time RT-PCR technique was used to investigate the proliferation mechanisms of the AS on the NSCs.Results Characteristic protein(Nestin)of NSCs labeling,BrdU labeling were positive showed by immunocytochemical staining.The ICC of BrdU labeling results showed that different dosages of AS could promote the proliferation of NSCs in vitro.The proliferation rate of NSCs was increased extremely significant(P

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