Animal development is remarkably robust; cell fates are specified with spatial and temporal precision despite physiological and environmental contingencies. Favorable conditions cause Caenorhabditis elegans to develop rapidly through four larval stages (L1-L4) to the reproductive adult. In unfavorable conditions, L2 larvae can enter the developmentally quiescent, stress-resistant dauer larva stage, enabling them to survive for prolonged periods before completing development. A specific progression of cell division and differentiation events occurs with fidelity during the larval stages, regardless of whether an animal undergoes continuous or dauer-interrupted development. The temporal patterning of developmental events is controlled by the ...
From egg through adult, C. elegans has six life stages including an option for dauer formation and d...
Mi2 proteins are evolutionarily conserved, ATP-dependent chromatin remodelers of the CHD family tha...
MicroRNAs regulate temporal transitions in gene expression associated with cell fate progression and...
Animal development is remarkably robust; cell fates are specified with spatial and temporal precisio...
Animals have evolved mechanisms to ensure the robustness of developmental outcomes to changing envir...
Animals have evolved mechanisms to ensure the robustness of developmental outcomes to changing envir...
Adverse environmental conditions can affect rates of animal developmental progression and lead to te...
AbstractThe heterochronic pathway controls temporal patterning during Caenorhabditis elegans larval ...
In C. elegans larvae, the execution of stage-specific developmental events is controlled by heteroch...
In the nematode Caenorhabditis elegans, microRNA (miRNA) regulation of development was first observe...
SummaryThe microRNA let-7 is a critical regulator of developmental timing events at the larval-to-ad...
Animal development is complex yet surprisingly robust. Animals may develop alternative phenotypes co...
Robustness is a ubiquitous property of biological systems, however, underlying mechanisms that help ...
AbstractThe lin-4 and let-7 small temporal RNAs play a central role in controlling the timing of Cae...
Animals developing in the wild encounter a range of environmental conditions, and so developmental m...
From egg through adult, C. elegans has six life stages including an option for dauer formation and d...
Mi2 proteins are evolutionarily conserved, ATP-dependent chromatin remodelers of the CHD family tha...
MicroRNAs regulate temporal transitions in gene expression associated with cell fate progression and...
Animal development is remarkably robust; cell fates are specified with spatial and temporal precisio...
Animals have evolved mechanisms to ensure the robustness of developmental outcomes to changing envir...
Animals have evolved mechanisms to ensure the robustness of developmental outcomes to changing envir...
Adverse environmental conditions can affect rates of animal developmental progression and lead to te...
AbstractThe heterochronic pathway controls temporal patterning during Caenorhabditis elegans larval ...
In C. elegans larvae, the execution of stage-specific developmental events is controlled by heteroch...
In the nematode Caenorhabditis elegans, microRNA (miRNA) regulation of development was first observe...
SummaryThe microRNA let-7 is a critical regulator of developmental timing events at the larval-to-ad...
Animal development is complex yet surprisingly robust. Animals may develop alternative phenotypes co...
Robustness is a ubiquitous property of biological systems, however, underlying mechanisms that help ...
AbstractThe lin-4 and let-7 small temporal RNAs play a central role in controlling the timing of Cae...
Animals developing in the wild encounter a range of environmental conditions, and so developmental m...
From egg through adult, C. elegans has six life stages including an option for dauer formation and d...
Mi2 proteins are evolutionarily conserved, ATP-dependent chromatin remodelers of the CHD family tha...
MicroRNAs regulate temporal transitions in gene expression associated with cell fate progression and...