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一株降解亚硝酸盐的乳酸乳球菌对辣白菜风味品质的影响 被引量:1
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作者 赵强 谷云静 +5 位作者 程伟烨 李子凡 张宝新 赵世浩 刘文丽 李华敏 《中国调味品》 CAS 北大核心 2024年第12期42-52,共11页
辣白菜是北方常见的传统发酵蔬菜,其发酵过程中会产生亚硝酸盐,危害人体健康。该研究从120株泡菜乳酸菌中筛选出一株能够高效降解亚硝酸盐的乳酸菌PG2-8(降解率为96.13%),经16S rRNA基因序列分析,鉴定为乳酸乳球菌。将该菌株应用于辣白... 辣白菜是北方常见的传统发酵蔬菜,其发酵过程中会产生亚硝酸盐,危害人体健康。该研究从120株泡菜乳酸菌中筛选出一株能够高效降解亚硝酸盐的乳酸菌PG2-8(降解率为96.13%),经16S rRNA基因序列分析,鉴定为乳酸乳球菌。将该菌株应用于辣白菜发酵,分析其对辣白菜风味品质的影响。采用固相微萃取结合气相色谱-质谱联用法对辣白菜中的挥发性风味物质进行分析,共检测出56种风味物质,确定其中8种风味物质为乳酸乳球菌PG2-8发酵辣白菜区别于自然发酵辣白菜的潜在标记物质。经乳酸乳球菌PG2-8发酵后,辣白菜的硫化物浓度降低,风味品质得到明显改善,发酵周期缩短。该研究结果表明,乳酸乳球菌PG2-8有作为发酵辣白菜启动菌株的潜力。 展开更多
关键词 乳酸乳球 亚硝酸盐 辣白菜 风味物质 启动菌株
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Characterization and synthetic biology elements of nonmodel bacteria,Acetobacteraceae
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作者 Yanmei Gao 《中国科学技术大学学报》 CAS CSCD 北大核心 2024年第9期55-67,70,共14页
Acetobacteraceae has garnered significant attention because of its unique properties and the broad applications of the bacterial cellulose it produces.However,unlike model strains,Acetobacteraceae have few synthetic b... Acetobacteraceae has garnered significant attention because of its unique properties and the broad applications of the bacterial cellulose it produces.However,unlike model strains,Acetobacteraceae have few synthetic biology applications because they are difficult to manipulate genetically and have insufficient genetic regulatory elements,among other factors.To address this limitation,this study characterized the fundamental properties and synthetic biology elements of three commonly used bacterial cellulose-producing strains.First,the basic characteristics of the three strains,including their cellulose film production ability,division time,antibiotic susceptibility,and plasmid features,were analyzed.Two inducible promoters(pTrc and pLux101)were subsequently characterized within the three strains.The inducibility of the pTrc promoter was relatively low across the three strains(induction ratio:1.98–6.39),whereas the pLux101 promoter demonstrated a significantly greater level of inducibility within the three strains(induction ratio:87.28–216.71).Finally,through gene knockout experiments,this study identified four genes essential for bacterial cellulose film production in the genome of the Gluconacetobacter hansenii ATCC 5358 strain.This study not only enriches the library of synthetic biology elements in nonmodel strains,but also lays the foundation for the synthetic biology applications of Acetobacteraceae. 展开更多
关键词 synthetic biology ACETOBACTERACEAE bacterial cellulose inducible promoter nonmodel bacteria
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