Characterization of growing microorganisms in soil by stable isotope probing with H218O

被引:86
作者
Schwartz, Egbert [1 ]
机构
[1] No Arizona Univ, Dept Biol Sci, Flagstaff, AZ 86011 USA
关键词
D O I
10.1128/AEM.02021-06
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
A new approach to characterize growing microorganisms in environmental samples based on labeling microbial DNA with (H2O)-O-18 is described. To test if sufficient amounts of O-18 could be incorporated into DNA to use water as a labeling substrate for stable isotope probing, Escherichia coli DNA was labeled by cultivating bacteria in Luria broth with (H2O)-O-18 and labeled DNA was separated from [O-16]DNA on a cesium chloride bacteria in Luria broth with gradient. Soil samples were incubated with (H2O)-O-18 for 6, 14, or 21 days, and isopycnic centrifugation of the soil DNA showed the formation of two bands after 6 days and three bands after 14 or 21 days, indicating that O-18 can be used in the stable isotope probing of soil samples. DNA extracted from soil incubated for 21 days with (H2O)-O-18 was fractionated after isopycnic centrifugation and DNA from 17 subsamples was used in terminal restriction fragment length polymorphism (TRFLP) analysis of bacterial 16S rRNA genes. The TRELP patterns clustered into three groups that corresponded to the three DNA bands. The fraction of total fluorescence contributed by individual terminal restriction fragments (TRF) to a TRFLP pattern varied across the 17 subsamples so that a TPF was more prominent in only one of the three bands. Labeling soil DNA with (H2O)-O-18 allows the identification of newly grown cells. In addition, cells that survive but do not divide during an incubation period can also be characterized with this new technique because their DNA remains without the label.
引用
收藏
页码:2541 / 2546
页数:6
相关论文
共 36 条
[1]  
Borneman J, 1999, APPL ENVIRON MICROB, V65, P3398
[2]   BACTERIAL GROWTH RATE IN SEA - DIRECT ANALYSIS BY THYMIDINE AUTORADIOGRAPHY [J].
BROCK, TD .
SCIENCE, 1967, 155 (3758) :81-&
[3]  
BRYANT JD, 1995, GEOCHIM COSMOCHIM AC, V59, P4523
[5]   O-18 CONTENT OF ATMOSPHERIC OXYGEN DOES NOT AFFECT THE OXYGEN ISOTOPE RELATIONSHIP BETWEEN ENVIRONMENTAL WATER AND CELLULOSE IN A SUBMERGED AQUATIC PLANT, EGERIA-DENSA PLANCH [J].
COOPER, LW ;
DENIRO, MJ .
PLANT PHYSIOLOGY, 1989, 91 (02) :536-541
[6]   Use of field-based stable isotope probing to identify adapted populations and track carbon flow through a phenol-degrading soil microbial community [J].
DeRito, CM ;
Pumphrey, GM ;
Madsen, EL .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2005, 71 (12) :7858-7865
[7]   13C and 15N natural abundance of the soil microbial biomass [J].
Dijkstra, Paul ;
Ishizu, Ayaka ;
Doucett, Richard ;
Hart, Stephen C. ;
Schwartz, Egbert ;
Menyailo, Oleg V. ;
Hungate, Bruce A. .
SOIL BIOLOGY & BIOCHEMISTRY, 2006, 38 (11) :3257-3266
[8]   Effects of drying-rewetting frequency on soil carbon and nitrogen transformations [J].
Fierer, N ;
Schimel, JP .
SOIL BIOLOGY & BIOCHEMISTRY, 2002, 34 (06) :777-787
[9]   MEASURING BACTERIAL PRODUCTION VIA RATE OF INCORPORATION OF [H-3]THYMIDINE INTO DNA [J].
FINDLAY, SEG ;
MEYER, JL ;
EDWARDS, RT .
JOURNAL OF MICROBIOLOGICAL METHODS, 1984, 2 (02) :57-72
[10]   SUBUNIT INTERACTION DURING CATALYSIS - ALTERNATING SITE COOPERATIVITY IN PHOTOPHOSPHORYLATION SHOWN BY SUBSTRATE MODULATION OF [ATP-O-18 SPECIES FORMATION [J].
HACKNEY, DD ;
ROSEN, G ;
BOYER, PD .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1979, 76 (08) :3646-3650