Cellulase with Bacillus velezensis improves physicochemical characteristics, microbiota, and metabolites of two-stage solid-state fermented corn germ meal

植物乳杆菌 食品科学 发酵 纤维素酶 乳酸 固态发酵 化学 乳酸菌 生物 纤维素 微生物学 生物化学 细菌 遗传学
作者
Long Chen,Yujin Guo,Xin Liu,Lin Zheng,Bai Wei,Zijian Zhao
出处
期刊:Research Square - Research Square
标识
DOI:10.21203/rs.3.rs-3216722/v1
摘要

Abstract Corn germ meal (CGM) is one of the major byproducts of corn starch extraction. Although CGM has rich fiber content, it lacks good protein content and amino acid balance, and therefore cannot be fully utilized as animal feed. In this study, we investigated the processing effect of cellulase synergized with Bacillus velezensis on the nutritional value of pretreated CGM (PCGM) in two-stage solid-state fermentation (SSF). High-throughput sequencing technology was used to explore the dynamic changes in microbial diversity. The results showed that compared with three combinations of B. velezensis + Lactobacillus plantarum (PCGM-BL), cellulase + L. plantarum (PCGM-CL), and control group (PCGM-CK), the fourth combination of cellulase + B. velezensis + L. plantarum (PCGM-BCL) significantly improved the nutritional characteristics of PCGM. After two-stage SSF (48 h), viable bacterial count and contents of crude protein (CP) and trichloroacetic acid-soluble protein (TCA-SP) all were increased in PCGM-BCL (p < 0.05), while the pH was reduced to 4.38 ± 0.02. In addition, compared with PCGM-BL, the cellulose degradation rate increased from 5.02 to 50.74%, increasing the amounts of short-chain fatty acids (216.61 ± 2.74 to 1727.55 ± 23.00 µg/g) and total amino acids (18.60 to 21.02%) in PCGM-BCL. Furthermore, high-throughput sequencing analysis revealed significant dynamic changes in microbial diversity. In the first stage of PCGM-BCL fermentation, Bacillus was the dominant genus (99.87%), which after 24 h of anaerobic fermentation changed to lactobacillus (37.45%). Kyoto Encylopaedia of Genes and Genomes (KEGG) metabolic pathway analysis revealed that the pathways related to the metabolism of carbohydrates, amino acids, cofactors, and vitamins accounted for more than 10% of the enriched pathways throughout the fermentation period. Concisely, we show that cellulase can effectively improve the nutritional value of PCGM when synergized with B. velezensis in two-stage SSF.
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