Department of Biotechnology, College of Life Science, Huazhong University of Science and Technology, Email:
Key Laboratory of Molecular Biophysics, Ministry of Education, Wuhan, Hubei, China.
Database (Oxford). 2019 Jan 1;2019. doi: 10.1093/database/baz119.
Since the invention over a hundred years ago, plastics have been used in many applications, and they are involved in every aspect of our lives. The extensive usage of plastics results in a tremendous amount of waste, which has become a severe burden on the environment. Several degradation approaches exist in nature to cope with ever-increasing plastic waste. Among these approaches, biodegradation by microorganisms has emerged as a natural way, which is favored by many environmentally conscious societies. To facilitate the study on biodegradation of plastics, we developed an online resource, Plastics Microbial Biodegradation Database (PMBD), to gather and present the information about microbial biodegradation of plastics. In this database, 949 microorganisms-plastics relationships and 79 genes involved in the biodegradation of plastics were manually collected and confirmed through literature searching. In addition, more than 8000 automatically annotated enzyme sequences, which were predicted to be involved in the plastics biodegradation, were extracted from the TrEMBL section of the UniProt database. The PMBD database is presented with a website at http://pmbd.genome-mining.cn/home. Data may be accessed through browsing or searching. Also included on the website are a sequence alignment tool and a function prediction tool.
百余年来,塑料已被广泛应用于诸多领域,其身影遍布我们生活的方方面面。由于塑料的大量使用,产生了巨量的废弃物,这给环境造成了沉重的负担。自然界存在多种降解方法来应对不断增加的塑料垃圾,其中微生物的生物降解成为一种自然的方法,受到许多具有环保意识的社会的青睐。为了促进对塑料生物降解的研究,我们开发了一个在线资源——塑料微生物生物降解数据库(PMBD),用于收集和展示有关塑料微生物生物降解的信息。在这个数据库中,我们通过文献检索手动收集并确认了 949 种微生物-塑料关系和 79 种参与塑料生物降解的基因。此外,我们还从 UniProt 数据库的 TrEMBL 部分提取了 8000 多个自动注释的酶序列,这些序列被预测参与了塑料的生物降解。PMBD 数据库以网站的形式呈现,网址为 http://pmbd.genome-mining.cn/home。可以通过浏览或搜索来访问数据。该网站还提供序列比对工具和功能预测工具。