Jensen Paul R, Gontang Erin, Mafnas Chrisy, Mincer Tracy J, Fenical William
Center for Marine Biotechnology and Biomedicine, Scripps Institution of Oceanography, University of California - San Diego, La Jolla, CA 92093-0204, USA.
Environ Microbiol. 2005 Jul;7(7):1039-48. doi: 10.1111/j.1462-2920.2005.00785.x.
Actinomycetes were cultivated using a variety of media and selective isolation techniques from 275 marine samples collected around the island of Guam. In total, 6425 actinomycete colonies were observed and 983 (15%) of these, representing the range of morphological diversity observed from each sample, were obtained in pure culture. The majority of the strains isolated (58%) required seawater for growth indicating a high degree of marine adaptation. The dominant actinomycete recovered (568 strains) belonged to the seawater-requiring marine taxon 'Salinospora', a new genus within the family Micromonosporaceae. A formal description of this taxon has been accepted for publication (Maldonado et al., 2005) and includes a revision of the generic epithet to Salinispora gen. nov. Members of two major new clades related to Streptomyces spp., tentatively called MAR2 and MAR3, were cultivated and appear to represent new genera within the Streptomycetaceae. In total, five new marine phylotypes, including two within the Thermomonosporaceae that appear to represent new taxa, were obtained in culture. These results support the existence of taxonomically diverse populations of phylogenetically distinct actinomycetes residing in the marine environment. These bacteria can be readily cultured using low nutrient media and represent an unexplored resource for pharmaceutical drug discovery.
利用多种培养基和选择性分离技术,从关岛周围采集的275份海洋样本中培养放线菌。总共观察到6425个放线菌菌落,其中983个(15%)获得纯培养,这些菌落代表了每个样本中观察到的形态多样性范围。分离出的大多数菌株(58%)需要海水才能生长,这表明它们具有高度的海洋适应性。回收的优势放线菌(568株)属于需要海水的海洋分类群“盐孢菌属”,这是小单孢菌科内的一个新属。该分类群的正式描述已被接受发表(马尔多纳多等人,2005年),包括将属名修订为盐孢菌属新属。与链霉菌属相关的两个主要新分支的成员,暂称为MAR2和MAR3,已被培养出来,似乎代表链霉菌科内的新属。总共从培养物中获得了五个新的海洋系统发育型,包括嗜热单孢菌科内的两个似乎代表新分类群的类型。这些结果支持了海洋环境中存在分类学上多样的、系统发育上不同的放线菌种群。这些细菌可以很容易地用低营养培养基培养,是药物发现的未开发资源。