scholarly article | Q13442814 |
P50 | author | Roy Kishony | Q66087927 |
P2093 | author name string | Morten Ernebjerg | |
P2860 | cites work | Quorum Sensing in Bacteria | Q22255618 |
Use of ichip for high-throughput in situ cultivation of "uncultivable" microbial species | Q24605448 | ||
Pyrosequencing enumerates and contrasts soil microbial diversity | Q24616826 | ||
New developments in microbial interspecies signaling | Q24650382 | ||
Structure and evolution of Streptomyces interaction networks in soil and in silico | Q27320756 | ||
Environmental genome shotgun sequencing of the Sargasso Sea | Q27860605 | ||
Comparative metagenomics of microbial communities | Q29555844 | ||
Functional metagenomic profiling of nine biomes | Q30014835 | ||
In situ spatial patterns of soil bacterial populations, mapped at multiple scales, in an arable soil. | Q30738193 | ||
Computational improvements reveal great bacterial diversity and high metal toxicity in soil | Q30860154 | ||
Observing growth and division of large numbers of individual bacteria by image analysis | Q31041530 | ||
Microbial diversity and function in soil: from genes to ecosystems | Q31073757 | ||
Predicting microbial species richness | Q33230037 | ||
The use of colony development for the characterization of bacterial communities in soil and on roots | Q86645185 | ||
What is the extent of prokaryotic diversity? | Q33259718 | ||
Toward an ecological classification of soil bacteria. | Q33289307 | ||
Constraints on microbial metabolism drive evolutionary diversification in homogeneous environments. | Q33294921 | ||
Short peptide induces an "uncultivable" microorganism to grow in vitro | Q33339256 | ||
Interspecies chemical communication in bacterial development | Q33476431 | ||
Automated imaging with ScanLag reveals previously undetectable bacterial growth phenotypes | Q33646562 | ||
Growth patterns of two marine isolates: adaptations to substrate patchiness? | Q33990233 | ||
Isolating "uncultivable" microorganisms in pure culture in a simulated natural environment | Q34127944 | ||
Cultivation of the ubiquitous SAR11 marine bacterioplankton clade. | Q34143482 | ||
Measurement of in situ activities of nonphotosynthetic microorganisms in aquatic and terrestrial habitats | Q34194521 | ||
Cultivating the uncultured | Q34388876 | ||
Antibiotics as intermicrobial signaling agents instead of weapons | Q35194014 | ||
Isolation of Typical Marine Bacteria by Dilution Culture: Growth, Maintenance, and Characteristics of Isolates under Laboratory Conditions. | Q35679821 | ||
Viability and isolation of marine bacteria by dilution culture: theory, procedures, and initial results | Q36064506 | ||
The truth about antibiotics | Q36406981 | ||
Antibiotics as signalling molecules | Q36732540 | ||
Look who's talking: communication and quorum sensing in the bacterial world. | Q36759802 | ||
Advances in soil microbial ecology and the biodiversity | Q36882449 | ||
Drug interactions modulate the potential for evolution of resistance | Q36937085 | ||
New strategies for cultivation and detection of previously uncultured microbes | Q37044291 | ||
Streptomyces morphogenetics: dissecting differentiation in a filamentous bacterium. | Q37349848 | ||
Eco-physiological characterization of soil bacterial populations in different states of growth | Q38972200 | ||
Improved culturability of soil bacteria and isolation in pure culture of novel members of the divisions Acidobacteria, Actinobacteria, Proteobacteria, and Verrucomicrobia. | Q39653368 | ||
The Growth and Form of Bacterial Colonies | Q39714941 | ||
Biology of Oligotrophic Bacteria | Q39811449 | ||
Formation of bacterial colonies in successive time intervals | Q40050246 | ||
The significances of bacterial colony patterns | Q40465991 | ||
The physical environment in soil microbiology: an attempt to extend principles of microbiology to soil microoganisms | Q40555967 | ||
Presence of N-acyl homoserine lactones in soil detected by a whole-cell biosensor and flow cytometry. | Q40598133 | ||
Effects of growth medium, inoculum size, and incubation time on culturability and isolation of soil bacteria | Q40985942 | ||
Liquid serial dilution is inferior to solid media for isolation of cultures representative of the phylum-level diversity of soil bacteria | Q41031659 | ||
Bacterial growth on surfaces: automated image analysis for quantification of growth rate-related parameters | Q41822009 | ||
Siderophores from neighboring organisms promote the growth of uncultured bacteria | Q41846710 | ||
The shape of an ecological trade-off varies with environment | Q46537022 | ||
The trade-off between rate and yield in the design of microbial metabolism | Q46817335 | ||
Genetic and phenotypic traits of streptomycetes used to characterize antibiotic activities of field-collected microbes | Q48197724 | ||
Automated image analysis of bacterial colony growth as a tool to study individual lag time distributions of immobilized cells. | Q51349326 | ||
BacSim, a simulator for individual-based modelling of bacterial colony growth. | Q52227664 | ||
Oligotrophs versus copiotrophs | Q54161060 | ||
Acidobacteria, Rubrobacteridae and Chloroflexi are abundant among very slow-growing and mini-colony-forming soil bacteria | Q57135823 | ||
Microbial awakenings | Q59064494 | ||
P433 | issue | 5 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | soil bacterium | Q123856864 |
P304 | page(s) | 1345-1352 | |
P577 | publication date | 2011-12-22 | |
P1433 | published in | Applied and Environmental Microbiology | Q4781593 |
P1476 | title | Distinct growth strategies of soil bacteria as revealed by large-scale colony tracking | |
P478 | volume | 78 |
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