Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect effects, i.e., through genetic effects on other traits, affecting the trait of interest. This distinction is often of great importance, for example, when trying to improve crop yield and simultaneously control plant height. As suggested by Sewall Wright, assessing contributions of direct and indirect effects requires knowledge of (1) the presence or absence of direct genetic effects on each trait, and (2) the functional relationships between the traits. Because experimental validation of such relationships is often unfeasible, it is increasingly common to reconstruct them using causal inference methods. However, most current methods require al...
Probabilistic graphical models (PGMs) offer a conceptual architecture where biological and mathemati...
<div><p>In the context of genetics and breeding research on multiple phenotypic traits, reconstructi...
One of the goals of biology is to bridge levels of organization. Recent technological advances are e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Probabilistic graphical models (PGMs) offer a conceptual architecture where biological and mathemati...
Discovering the mechanisms by which genetic variation influences phenotypes is integral to understan...
Current technologies for high-throughput molecular profiling of large numbers of genetically differe...
Current technologies for high-throughput molecular profiling of large numbers of genetically differe...
Current technologies for high-throughput molecular profiling of large numbers of genetically differe...
Current technologies for high-throughput molecular profiling of large numbers of genetically differe...
Probabilistic graphical models (PGMs) offer a conceptual architecture where biological and mathemati...
<div><p>In the context of genetics and breeding research on multiple phenotypic traits, reconstructi...
One of the goals of biology is to bridge levels of organization. Recent technological advances are e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Genetic variance of a phenotypic trait can originate from direct genetic effects, or from indirect e...
Probabilistic graphical models (PGMs) offer a conceptual architecture where biological and mathemati...
Discovering the mechanisms by which genetic variation influences phenotypes is integral to understan...
Current technologies for high-throughput molecular profiling of large numbers of genetically differe...
Current technologies for high-throughput molecular profiling of large numbers of genetically differe...
Current technologies for high-throughput molecular profiling of large numbers of genetically differe...
Current technologies for high-throughput molecular profiling of large numbers of genetically differe...
Probabilistic graphical models (PGMs) offer a conceptual architecture where biological and mathemati...
<div><p>In the context of genetics and breeding research on multiple phenotypic traits, reconstructi...
One of the goals of biology is to bridge levels of organization. Recent technological advances are e...