[ Objective ] The aim of this study is to identify 6 marine fungi species by analyzing ITS nucleotide sequence, which had been primarily identified as penicillium based on morphological characteristics. [ Method ] The...[ Objective ] The aim of this study is to identify 6 marine fungi species by analyzing ITS nucleotide sequence, which had been primarily identified as penicillium based on morphological characteristics. [ Method ] The ITS regions of these species were cloned by molecule biology method and phylogenetic analyzed using ClustalX1.83 software. [ Result] The ITS regions of these species were sequenced, and phylogenetic analysis between the yield sequences and the ITS sequences assessed in GenBank showed that the 6 strains all belonged to penicillium. [ Condusion] The present study suggests ITS sequence analysis could not be used as an only proof, but it is a very useful supplementary tool for the classification and identification of marine peniciUium combined with morphological characteristics.展开更多
Axenic microalgal strains are highly valued in diverse microalgal studies and applications. Antibiotics, alone or in combination, are often used to avoid bacterial contamination during microalgal isolation and culture...Axenic microalgal strains are highly valued in diverse microalgal studies and applications. Antibiotics, alone or in combination, are often used to avoid bacterial contamination during microalgal isolation and culture. In our preliminary trials, we found that many microalgae ceased growing in antibiotics at extremely high concentrations but could resume growth quickly when returned to an antibiotics-free liquid medium and formed colonies when spread on a solid medium. We developed a simple and highly efficient method of obtaining axenic microalgal cultures based on this observation. First, microalgal strains of different species or strains were treated with a mixture of ampicillin, gentamycin sulfate, kanamycin, neomycin and streptomycin (each at a concentration of 600 mg/L) for 3 days; they were then transferred to antibiotics-free medium for 5 days; and finally they were spread on solid f/2 media to allow algal colonies to form. With this method, five strains ofNannochloropsis sp. (Eustigmatophyceae), two strains of Cylindrotheca sp. (Bacillariophyceae), two strains of Tetraselmis sp. (Chlorodendrophyceae) and one strain ofAmphikrikos sp. (Trebouxiophyceae) were purified successfully. The method shows promise for batch- purifying microalgal cultures.展开更多
基金Supported by Standardization Arrangement and Integration and Shareof the Offshore Ocean Microorganism Resources(2004DKA30640)~~
文摘[ Objective ] The aim of this study is to identify 6 marine fungi species by analyzing ITS nucleotide sequence, which had been primarily identified as penicillium based on morphological characteristics. [ Method ] The ITS regions of these species were cloned by molecule biology method and phylogenetic analyzed using ClustalX1.83 software. [ Result] The ITS regions of these species were sequenced, and phylogenetic analysis between the yield sequences and the ITS sequences assessed in GenBank showed that the 6 strains all belonged to penicillium. [ Condusion] The present study suggests ITS sequence analysis could not be used as an only proof, but it is a very useful supplementary tool for the classification and identification of marine peniciUium combined with morphological characteristics.
基金Supported by the National Basic Research Program of China(973 Program)(No.2011CB200901)the National Technical Supporting Project Foundation(No.2011BAD14B01)the National High Technology Research and Development Program of China(863 Program)(No.2013AA065801)
文摘Axenic microalgal strains are highly valued in diverse microalgal studies and applications. Antibiotics, alone or in combination, are often used to avoid bacterial contamination during microalgal isolation and culture. In our preliminary trials, we found that many microalgae ceased growing in antibiotics at extremely high concentrations but could resume growth quickly when returned to an antibiotics-free liquid medium and formed colonies when spread on a solid medium. We developed a simple and highly efficient method of obtaining axenic microalgal cultures based on this observation. First, microalgal strains of different species or strains were treated with a mixture of ampicillin, gentamycin sulfate, kanamycin, neomycin and streptomycin (each at a concentration of 600 mg/L) for 3 days; they were then transferred to antibiotics-free medium for 5 days; and finally they were spread on solid f/2 media to allow algal colonies to form. With this method, five strains ofNannochloropsis sp. (Eustigmatophyceae), two strains of Cylindrotheca sp. (Bacillariophyceae), two strains of Tetraselmis sp. (Chlorodendrophyceae) and one strain ofAmphikrikos sp. (Trebouxiophyceae) were purified successfully. The method shows promise for batch- purifying microalgal cultures.