The capacity to map traits over large cohorts of individuals—phenomics—lags far behind the explosive development in genomics. For microbes, the estimation of growth is the key phenotype because of its link to fitness. We introduce an automated microbial phenomics framework that delivers accurate, precise, and highly resolved growth phenotypes at an unprecedented scale. Advancements were achieved through the introduction of transmissive scanning hardware and software technology, frequent acquisition of exact colony population size measurements, extraction of population growth rates from growth curves, and removal of spatial bias by reference-surface normalization. Our prototype arrangement automatically records and analyzes close to 100,000 ...
Growing anaerobic microorganisms in phenotypic microarrays (PM) and 96-well microtiter plates is an ...
As the study of biology has increasingly utilized high- throughput experimental platforms, the need ...
Cell growth is a complex phenotype widely used in systems biology to gauge the impact of genetic and...
The capacity to map traits over large cohorts of individuals—phenomics—lags far behind the explosive...
BACKGROUND: Phenomics is a field in functional genomics that records variation in organismal phenoty...
Abstract Background Microbial arrays, with a large number of different strains on a single plate pri...
Microbial colony growth can serve as a useful readout in assays for studying complex genetic interac...
Microbial colony growth can serve as a useful readout in assays for studying complex genetic interac...
Connecting genotype to phenotype is fundamental in biomedical research and in our understanding of d...
ObjectiveThe calculation of growth rates provides basic metric for biological fitness and is standar...
<div><p>In microorganisms, and more particularly in yeasts, a standard phenotyping approach consists...
In microorganisms, and more particularly in yeasts, a standard phenotyping approach consists in the ...
The genomic revolution of the last twenty years has launched the biosciences into a new frontier. Fo...
Abstract Background Numerous functional genomics appr...
The Phenotype MicroArray technology of Biolog, Inc. (Hayward, CA) measures the respiration of cells ...
Growing anaerobic microorganisms in phenotypic microarrays (PM) and 96-well microtiter plates is an ...
As the study of biology has increasingly utilized high- throughput experimental platforms, the need ...
Cell growth is a complex phenotype widely used in systems biology to gauge the impact of genetic and...
The capacity to map traits over large cohorts of individuals—phenomics—lags far behind the explosive...
BACKGROUND: Phenomics is a field in functional genomics that records variation in organismal phenoty...
Abstract Background Microbial arrays, with a large number of different strains on a single plate pri...
Microbial colony growth can serve as a useful readout in assays for studying complex genetic interac...
Microbial colony growth can serve as a useful readout in assays for studying complex genetic interac...
Connecting genotype to phenotype is fundamental in biomedical research and in our understanding of d...
ObjectiveThe calculation of growth rates provides basic metric for biological fitness and is standar...
<div><p>In microorganisms, and more particularly in yeasts, a standard phenotyping approach consists...
In microorganisms, and more particularly in yeasts, a standard phenotyping approach consists in the ...
The genomic revolution of the last twenty years has launched the biosciences into a new frontier. Fo...
Abstract Background Numerous functional genomics appr...
The Phenotype MicroArray technology of Biolog, Inc. (Hayward, CA) measures the respiration of cells ...
Growing anaerobic microorganisms in phenotypic microarrays (PM) and 96-well microtiter plates is an ...
As the study of biology has increasingly utilized high- throughput experimental platforms, the need ...
Cell growth is a complex phenotype widely used in systems biology to gauge the impact of genetic and...