Liu Lan, Salam Nimaichand, Jiao Jian-Yu, Jiang Hong-Chen, Zhou En-Min, Yin Yi-Rui, Ming Hong, Li Wen-Jun
State Key Laboratory of Biocontrol and Guangdong Provincial Key Laboratory of Plant Resources, School of Life Sciences, Sun Yat-Sen University, Guangzhou, China.
Yunnan Institute of Microbiology, Yunnan University, Kunming, China.
Microb Ecol. 2016 Jul;72(1):150-162. doi: 10.1007/s00248-016-0756-2. Epub 2016 Apr 5.
The class Actinobacteria has been a goldmine for the discovery of antibiotics and has attracted interest from both academics and industries. However, an absence of novel approaches during the last few decades has limited the discovery of new microbial natural products useful for industries. Scientists are now focusing on the ecological aspects of diverse environments including unexplored or underexplored habitats and extreme environments in the search for new metabolites. This paper reports on the diversity of culturable actinobacteria associated with hot springs located in Tengchong County, Yunnan Province, southwestern China. A total of 58 thermophilic actinobacterial strains were isolated from the samples collected from ten hot springs distributed over three geothermal fields (e.g., Hehua, Rehai, and Ruidian). Phylogenetic positions and their biosynthetic profiles were analyzed by sequencing 16S rRNA gene and three biosynthetic gene clusters (KS domain of PKS-I, KSα domain of PKS-II and A domain of NRPS). On the basis of 16S rRNA gene phylogenetic analysis, the 58 strains were affiliated with 12 actinobacterial genera: Actinomadura Micromonospora, Microbispora, Micrococcus, Nocardiopsis, Nonomuraea, Promicromonospora, Pseudonocardia, Streptomyces, Thermoactinospora, Thermocatellispora, and Verrucosispora, of which the two novel genera Thermoactinospora and Thermocatellisopora were recently described from among these strains. Considering the biosynthetic potential of these actinobacterial strains, 22 were positive for PCR amplification of at least one of the three biosynthetic gene clusters (PKS-I, PKS-II, and NRPS). These actinobacteria were further subjected to antimicrobial assay against five opportunistic human pathogens (Acinetobacter baumannii, Escherichia coli, Micrococcus luteus, Staphylococcus aureus and Streptococcus faecalis). All of the 22 strains that were positive for PCR amplification of at least one of the biosynthetic gene domains exhibited antimicrobial activities against at least one of the five test organisms. Among the remaining 36 actinobacteria that are negative for PCR amplification of the domains for the biosynthetic genes, 33 strains showed antimicrobial activities against at least one of the five test pathogens. In summary, the findings presented in this study emphasized the importance of underexplored habitats such as Tengchong hot springs as potential sources for search of bioactive molecules.
放线菌纲一直是发现抗生素的宝库,吸引了学术界和工业界的关注。然而,在过去几十年里,由于缺乏新颖的方法,限制了对工业有用的新型微生物天然产物的发现。科学家们现在正专注于包括未探索或未充分探索的栖息地以及极端环境在内的各种环境的生态方面,以寻找新的代谢产物。本文报道了中国西南部云南省腾冲县温泉中可培养放线菌的多样性。从分布在三个地热田(如荷花、热海和瑞滇)的十个温泉采集的样本中,共分离出58株嗜热放线菌菌株。通过对16S rRNA基因和三个生物合成基因簇(PKS-I的KS结构域、PKS-II的KSα结构域和NRPS的A结构域)进行测序,分析了它们的系统发育位置及其生物合成谱。基于16S rRNA基因系统发育分析,这58株菌株隶属于12个放线菌属:马杜拉放线菌、小单孢菌属、小双孢菌属、微球菌属、诺卡氏放线菌属、野野村菌属、原小单孢菌属、假诺卡氏菌属、链霉菌属、嗜热放线孢菌属、嗜热卡特利孢菌属和疣孢菌属,其中嗜热放线孢菌属和嗜热卡特利孢菌属这两个新属是最近从这些菌株中描述的。考虑到这些放线菌菌株的生物合成潜力,22株对三个生物合成基因簇(PKS-I、PKS-II和NRPS)中至少一个的PCR扩增呈阳性。这些放线菌进一步针对五种人类机会致病菌(鲍曼不动杆菌、大肠杆菌、藤黄微球菌、金黄色葡萄球菌和粪肠球菌)进行了抗菌测定。所有对至少一个生物合成基因结构域的PCR扩增呈阳性的22株菌株,均对五种测试微生物中的至少一种表现出抗菌活性。在其余36株对生物合成基因结构域的PCR扩增呈阴性的放线菌中, 33株对五种测试病原体中的至少一种表现出抗菌活性。总之,本研究结果强调了腾冲温泉等未充分探索的栖息地作为寻找生物活性分子潜在来源的重要性。