Department of Biotechnology, Alagappa University, Karaikudi, Tamil Nadu, India.
FEMS Microbiol Lett. 2011 Jan;314(2):112-8. doi: 10.1111/j.1574-6968.2010.02149.x. Epub 2010 Nov 24.
The marine environment is a virtually untapped source of novel actinomycete diversity and its metabolites. Investigating the diversity of actinomycetes in other marine macroorganisms, like seaweeds and sponges, have resulted in isolation of novel bioactive metabolites. Actinomycetes diversity associated with corals and their produced metabolites have not yet been explored. Hence, in this study we attempted to characterize the culturable actinomycetes population associated with the coral Acropora digitifera. Actinomycetes were isolated from the mucus of the coral wherein the actinomycetes count was much higher when compared with the surrounding seawater and sediment. Actinobacteria-specific 16S rRNA gene primers were used for identifying the isolates at the molecular level in addition to biochemical tests. Amplified ribosomal DNA restriction analysis using three restriction enzymes revealed several polymorphic groups within the isolates. Sequencing and blast analysis of the isolates revealed that some isolates had only 96.7% similarity with its nearest match in GenBank indicating that they may be novel isolates at the species level. The isolated actinomycetes exhibited good antibacterial activity against various human pathogens. This study offers for the first time a prelude about the unexplored culturable actinomycetes diversity associated with a scleractinian coral and their bioactive capabilities.
海洋环境是新型放线菌多样性及其代谢产物的几乎未开发的来源。研究其他海洋大型生物(如海藻和海绵)中的放线菌多样性,已经分离出了新型生物活性代谢产物。与珊瑚相关的放线菌多样性及其产生的代谢产物尚未得到探索。因此,在这项研究中,我们试图描述与珊瑚 Acropora digitifera 相关的可培养放线菌种群。从珊瑚的黏液中分离出放线菌,与周围海水和沉积物相比,放线菌的数量要高得多。使用放线菌特异性 16S rRNA 基因引物在分子水平上对分离物进行鉴定,此外还进行了生化测试。使用三种限制酶对扩增的核糖体 DNA 进行限制分析,揭示了分离物中的几个多态性群体。对分离物的测序和blast 分析表明,一些分离物与 GenBank 中最接近的匹配物只有 96.7%的相似度,表明它们可能是种水平上的新型分离物。分离出的放线菌对各种人类病原体表现出良好的抗菌活性。本研究首次提供了有关与硬珊瑚相关的未开发的可培养放线菌多样性及其生物活性能力的初步信息。