Tian Xinpeng, Zhang Zhewen, Yang Tingting, Chen Meili, Li Jie, Chen Fei, Yang Jin, Li Wenjie, Zhang Bing, Zhang Zhang, Wu Jiayan, Zhang Changsheng, Long Lijuan, Xiao Jingfa
Key Laboratory of Tropical Marine Bio-resources and Ecology and Guangdong Key Laboratory of Marine Materia Medica, South China Sea Institute of Oceanology - Chinese Academy of Sciences Guangzhou, China.
Key Laboratory of Genome Sciences and Information, Beijing Institute of Genomics - Chinese Academy of Sciences Beijing, China.
Front Microbiol. 2016 Jun 27;7:998. doi: 10.3389/fmicb.2016.00998. eCollection 2016.
Over 200 genomes of streptomycete strains that were isolated from various environments are available from the NCBI. However, little is known about the characteristics that are linked to marine adaptation in marine-derived streptomycetes. The particularity and complexity of the marine environment suggest that marine streptomycetes are genetically diverse. Here, we sequenced nine strains from the Streptomyces genus that were isolated from different longitudes, latitudes, and depths of the South China Sea. Then we compared these strains to 22 NCBI downloaded streptomycete strains. Thirty-one streptomycete strains are clearly grouped into a marine-derived subgroup and multiple source subgroup-based phylogenetic tree. The phylogenetic analyses have revealed the dynamic process underlying streptomycete genome evolution, and lateral gene transfer is an important driving force during the process. Pan-genomics analyses have revealed that streptomycetes have an open pan-genome, which reflects the diversity of these streptomycetes and guarantees the species a quick and economical response to diverse environments. Functional and comparative genomics analyses indicate that the marine-derived streptomycetes subgroup possesses some common characteristics of marine adaptation. Our findings have expanded our knowledge of how ocean isolates of streptomycete strains adapt to marine environments. The availability of streptomycete genomes from the South China Sea will be beneficial for further analysis on marine streptomycetes and will enrich the South China Sea's genetic data sources.
美国国立生物技术信息中心(NCBI)提供了200多个从各种环境中分离出的链霉菌菌株的基因组。然而,对于源自海洋的链霉菌中与海洋适应性相关的特征却知之甚少。海洋环境的特殊性和复杂性表明海洋链霉菌在遗传上具有多样性。在此,我们对从南海不同经度、纬度和深度分离出的9个链霉菌属菌株进行了测序。然后我们将这些菌株与22个从NCBI下载的链霉菌菌株进行了比较。基于系统发育树,31个链霉菌菌株被清晰地分为一个源自海洋的亚组和一个多源亚组。系统发育分析揭示了链霉菌基因组进化的动态过程,横向基因转移是这一过程中的一个重要驱动力。泛基因组分析表明,链霉菌具有一个开放的泛基因组,这反映了这些链霉菌的多样性,并保证了该物种对不同环境做出快速而经济的反应。功能和比较基因组分析表明,源自海洋的链霉菌亚组具有一些海洋适应性的共同特征。我们的研究结果扩展了我们对链霉菌菌株的海洋分离株如何适应海洋环境的认识。南海链霉菌基因组的可得性将有利于对海洋链霉菌的进一步分析,并将丰富南海的遗传数据源。