A major goal of the life sciences is to understand how molecular processes control phenotypes. Because understanding biological systems relies on the work of multiple laboratories, biologists implicitly assume that organisms with the same genotype will display similar phenotypes when grown in comparable conditions. We investigated to what extent this holds true for leaf growth variables and metabolite and transcriptome profiles of three Arabidopsis (Arabidopsis thaliana) genotypes grown in 10 laboratories using a standardized and detailed protocol. A core group of four laboratories generated similar leaf growth phenotypes, demonstrating that standardization is possible. But some laboratories presented significant differences in some leaf gr...
In traditional mutant screening approaches, genetic variants are tested for one or a small number of...
<p>A complex phenotype such as seed germination is the result of several genetic and environmental c...
One of the long-standing goals in plant biology has been to link genotypic variation to natural vari...
A major goal of the life sciences is to understand how molecular processes control phenotypes. Becau...
A major goal of the life sciences is to understand how molecular processes control phenotypes. Becau...
A major goal of the life sciences is to understand how molecular processes control phenotypes. Becau...
Abstract: Plants readily respond to changes in environmental conditions by alterations in metabolism...
<p>Background: Recent advances in genome sequencing technologies have shifted the research bottlenec...
Metabolite fingerprinting is widely used to unravel the chemical characteristics of biological sampl...
Metabolite fingerprinting is widely used to unravel the chemical characteristics of biological sampl...
Background:Plants exhibit phenotypic plasticity and respond to differences in environmental conditio...
Arabidopsis leaf growth consists of a complex sequence of interconnected events involving cell divis...
The rate at which plants grow is a major functional trait in plant ecology. However, little is known...
The environmental conditions under which plants grow affect the quality of seeds produced in a genot...
Discovering links between the genotype of an organism and its metabolite levels can increase our und...
In traditional mutant screening approaches, genetic variants are tested for one or a small number of...
<p>A complex phenotype such as seed germination is the result of several genetic and environmental c...
One of the long-standing goals in plant biology has been to link genotypic variation to natural vari...
A major goal of the life sciences is to understand how molecular processes control phenotypes. Becau...
A major goal of the life sciences is to understand how molecular processes control phenotypes. Becau...
A major goal of the life sciences is to understand how molecular processes control phenotypes. Becau...
Abstract: Plants readily respond to changes in environmental conditions by alterations in metabolism...
<p>Background: Recent advances in genome sequencing technologies have shifted the research bottlenec...
Metabolite fingerprinting is widely used to unravel the chemical characteristics of biological sampl...
Metabolite fingerprinting is widely used to unravel the chemical characteristics of biological sampl...
Background:Plants exhibit phenotypic plasticity and respond to differences in environmental conditio...
Arabidopsis leaf growth consists of a complex sequence of interconnected events involving cell divis...
The rate at which plants grow is a major functional trait in plant ecology. However, little is known...
The environmental conditions under which plants grow affect the quality of seeds produced in a genot...
Discovering links between the genotype of an organism and its metabolite levels can increase our und...
In traditional mutant screening approaches, genetic variants are tested for one or a small number of...
<p>A complex phenotype such as seed germination is the result of several genetic and environmental c...
One of the long-standing goals in plant biology has been to link genotypic variation to natural vari...