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不同等级高温大曲的微生物特征和代谢特征。

Characteristics of the microbiota and metabolic profile of high-temperature Daqu with different grades.

机构信息

Beijing Laboratory for Food Quality and Safety, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, China.

Sichuan Langjiu Co., Ltd, Luzhou, China.

出版信息

World J Microbiol Biotechnol. 2022 Jun 14;38(8):137. doi: 10.1007/s11274-022-03303-7.

Abstract

The superior grade Daqu (S_Daqu) and normal grade Daqu (N_Daqu) have obvious differences in flavor, fracture surface, appearance, etc., which can be accurately grouped by well-trained panel based on their sensory properties. However, the differences in microbial community diversity and metabolites between the S_Daqu and N_Daqu were still unclear. The culture-dependent method, the third generation Pacific Biosciences (PacBio) single-molecule, real-time (SMRT) sequencing technology, and nuclear magnetic resonance (NMR) were combined to show the characteristics in microorganisms and metabolites. Results showed that the fungal counts were higher in N_Daqu while the richness of bacterial communities was higher in S_Daqu (P < 0.05). Lentibacillus, Burkholderia, Saccharopolyspora, Thermoascus, and Rasamsonia were the dominant genera of S_Daqu while Staphylococcus, Scopulibacillus, and Chromocleista were the dominant genera in N_Daqu. The content of differential acids, amino acids, and alcohols including fumarate, glucuronate, glycine, 4-carboxyglutamate, and myo-inositol in S_Daqu was higher than that in N_Daqu by H NMR coupled with multivariate statistical analysis. The network analysis regarding microbes and metabolites suggested that Saccharopolyspora showed a strong positive correlation with 4-carboxyglutamate while Thermoascus and Chromocleista were highly negatively correlated with alanine and isobutyrate, respectively. Linear Discriminant Analysis (LDA) Effect Size (LEfSe) revealed that Macrococcus and Caulobacter were regarded as bacterial biomarkers in the S_Daqu while Chromocleista was the key fungal genera in N_Daqu. Functionality prediction indicated that the bacteria in S_Daqu were largely involved in more metabolic activities including biosynthesis, degradation, detoxification, and generation of precursor metabolite and energy.

摘要

优质大曲(S_Daqu)和普通大曲(N_Daqu)在风味、断口表面、外观等方面存在明显差异,经过训练有素的品尝小组可以根据其感官特性准确地对其进行分组。然而,S_Daqu 和 N_Daqu 之间的微生物群落多样性和代谢物差异仍不清楚。本研究采用基于培养的方法、第三代 Pacific Biosciences(PacBio)单分子实时(SMRT)测序技术和核磁共振(NMR)相结合的方法,展示了微生物和代谢物的特征。结果表明,N_Daqu 中的真菌计数较高,而 S_Daqu 中的细菌群落丰富度较高(P<0.05)。 Lentibacillus、Burkholderia、Saccharopolyspora、Thermoascus 和 Rasamsonia 是 S_Daqu 的优势属,而 Staphylococcus、Scopulibacillus 和 Chromocleista 是 N_Daqu 的优势属。通过 H NMR 结合多元统计分析发现,S_Daqu 中差异酸、氨基酸和醇的含量较高,包括富马酸、葡萄糖醛酸、甘氨酸、4-羧基谷氨酸和肌醇。微生物和代谢物的网络分析表明,Saccharopolyspora 与 4-羧基谷氨酸呈强烈正相关,而 Thermoascus 和 Chromocleista 与丙氨酸和异丁酸盐呈高度负相关。线性判别分析(LDA)效应大小(LEfSe)显示,Macrococcus 和 Caulobacter 被认为是 S_Daqu 中的细菌生物标志物,而 Chromocleista 是 N_Daqu 中的关键真菌属。功能预测表明,S_Daqu 中的细菌主要参与更多的代谢活动,包括生物合成、降解、解毒以及前体代谢物和能量的产生。

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