Adverse environmental conditions can affect rates of animal developmental progression and lead to temporary developmental quiescence (diapause), exemplified by the dauer larva stage of the nematode Caenorhabditis elegans (C. elegans). Remarkably, patterns of cell division and temporal cell-fate progression in C. elegans larvae are not affected by changes in developmental trajectory. However, the underlying physiological and gene regulatory mechanisms that ensure robust developmental patterning despite substantial plasticity in developmental progression are largely unknown. Here, we report that diapause-inducing pheromones correct heterochronic developmental cell lineage defects caused by insufficient expression of let-7 family microRNAs in ...
In response to the environment, the nematode C. elegans must choose between arrest at a long-lived a...
In response to small-molecule signals such as retinoids or steroids, nuclear receptors activate gene...
Animal development is remarkably robust; cell fates are specified with spatial and temporal precisio...
In C. elegans larvae, the execution of stage-specific developmental events is controlled by heteroch...
Progression of metazoans through different developmental programs requires temporal control that is ...
Robustness is a ubiquitous property of biological systems, however, underlying mechanisms that help ...
Although the gonad primarily functions in procreation, it also affects animal life span. Here, we sh...
From egg through adult, C. elegans has six life stages including an option for dauer formation and d...
Although the gonad primarily functions in procreation, it also affects animal life span. Here, we sh...
Although the gonad primarily functions in procreation, it also affects animal life span. Here, we sh...
SummaryThe molecular pathways that link nutritional cues to developmental programs are poorly unders...
During C. elegans development, animals must choose between reproductive growth or dauer diapause in ...
Animal development is remarkably robust; cell fates are specified with spatial and temporal precisio...
In response to the environment, the nematode C. elegans must choose between arrest at a long-lived a...
In response to the environment, the nematode C. elegans must choose between arrest at a long-lived a...
In response to the environment, the nematode C. elegans must choose between arrest at a long-lived a...
In response to small-molecule signals such as retinoids or steroids, nuclear receptors activate gene...
Animal development is remarkably robust; cell fates are specified with spatial and temporal precisio...
In C. elegans larvae, the execution of stage-specific developmental events is controlled by heteroch...
Progression of metazoans through different developmental programs requires temporal control that is ...
Robustness is a ubiquitous property of biological systems, however, underlying mechanisms that help ...
Although the gonad primarily functions in procreation, it also affects animal life span. Here, we sh...
From egg through adult, C. elegans has six life stages including an option for dauer formation and d...
Although the gonad primarily functions in procreation, it also affects animal life span. Here, we sh...
Although the gonad primarily functions in procreation, it also affects animal life span. Here, we sh...
SummaryThe molecular pathways that link nutritional cues to developmental programs are poorly unders...
During C. elegans development, animals must choose between reproductive growth or dauer diapause in ...
Animal development is remarkably robust; cell fates are specified with spatial and temporal precisio...
In response to the environment, the nematode C. elegans must choose between arrest at a long-lived a...
In response to the environment, the nematode C. elegans must choose between arrest at a long-lived a...
In response to the environment, the nematode C. elegans must choose between arrest at a long-lived a...
In response to small-molecule signals such as retinoids or steroids, nuclear receptors activate gene...
Animal development is remarkably robust; cell fates are specified with spatial and temporal precisio...