Hu Wei, Yuan Jiaxing, Fei Jiaxiang, Imdad Kaleem, Yang Pengfei, Huang Shen, Mao Duobin, Yang Jing
College of Tobacco Science and Engineering, Zhengzhou University of Light Industry, Zhengzhou, China.
Technology Research Developing Center, Shenzhen Tobacco Industrial Co., Ltd., Shenzhen, China.
Front Bioeng Biotechnol. 2025 May 12;13:1548323. doi: 10.3389/fbioe.2025.1548323. eCollection 2025.
Over the past 20 years, researchers have used multi-omics techniques to study microbial diversity and metabolic function on tobacco leaves. The unique metabolic function of tobacco microorganisms has attracted extensive attention from researchers, which is an important research field in tobacco industry to improve the intrinsic quality of tobacco leaf with microbial agents. The microorganisms are particularly rich on the surface of tobacco leaf, and their metabolic function is closely related to the change of tobacco leaf chemical composition. Some microorganisms have important metabolic functions, such as: degrading macromolecular and harmful substances in tobacco leaves, and they have different degradation rates and pathways for the substances. At present, many functions of tobacco leaf microorganisms have not been fully verified and analyzed. In the future, more novel culture methods are needed to screen and isolate microorganisms on the surface of tobacco leaves, deeply tap their metabolic potential, explore the application value of microorganisms in the tobacco industry, and further promote the innovation and development of the industry.
在过去20年里,研究人员利用多组学技术研究烟草叶片上的微生物多样性和代谢功能。烟草微生物独特的代谢功能引起了研究人员的广泛关注,这是烟草行业利用微生物制剂提高烟叶内在品质的一个重要研究领域。烟草叶片表面的微生物尤为丰富,其代谢功能与烟叶化学成分的变化密切相关。一些微生物具有重要的代谢功能,例如:降解烟叶中的大分子和有害物质,并且它们对这些物质具有不同的降解速率和途径。目前,烟叶微生物的许多功能尚未得到充分验证和分析。未来,需要更多新颖的培养方法来筛选和分离烟叶表面的微生物,深入挖掘其代谢潜力,探索微生物在烟草行业的应用价值,进一步推动该行业的创新发展。