<div><p>Feeding state and food availability can dramatically alter an animals' sensory response to chemicals in its environment. Dynamic changes in the expression of chemoreceptor genes may underlie some of these food and state-dependent changes in chemosensory behavior, but the mechanisms underlying these expression changes are unknown. Here, we identified a KIN-29 (SIK)-dependent chemoreceptor, <i>srh-234</i>, in <i>C. elegans</i> whose expression in the ADL sensory neuron type is regulated by integration of sensory and internal feeding state signals. We show that in addition to KIN-29, signaling is mediated by the DAF-2 insulin-like receptor, OCR-2 TRPV channel, and NPR-1 neuropeptide receptor. Cell-specific rescue experiments suggest th...
The nematode Caenorhabditis elegans has complex, naturally variable behavioral responses to environm...
The relationship between fat accumulation and metabolic disorders, such as obesity, is well document...
To accommodate complex and changing environmental conditions, animals have evolved mechanisms to mod...
Animals dramatically modify their chemosensory behaviors when starved, which could allow them to alt...
Food and feeding-state dependent changes in chemoreceptor gene expression may allow Caenorhabditis e...
AbstractSensory signals regulate multiple developmental and behavioral circuits in C. elegans, provi...
AbstractSensory signals regulate multiple developmental and behavioral circuits in C. elegans, provi...
Animals integrate changes in external and internal environments to generate behavior. While neural c...
An important function of the nervous system is to respond to changes in the environment. The nematod...
Animals integrate changes in external and internal environments to generate behavior. While neural c...
Neural circuits detect and process environmental changes to drive appropriate food-seeking or toxin-...
Animal internal state is modulated by nutrient intake, resulting in behavioral responses to changing...
SummaryThe insulin-like signaling pathway is known to regulate fat metabolism, dauer formation, and ...
The nematode Caenorhabditis elegans has complex, naturally variable behavioral responses to environm...
SummaryThe insulin-like signaling pathway is known to regulate fat metabolism, dauer formation, and ...
The nematode Caenorhabditis elegans has complex, naturally variable behavioral responses to environm...
The relationship between fat accumulation and metabolic disorders, such as obesity, is well document...
To accommodate complex and changing environmental conditions, animals have evolved mechanisms to mod...
Animals dramatically modify their chemosensory behaviors when starved, which could allow them to alt...
Food and feeding-state dependent changes in chemoreceptor gene expression may allow Caenorhabditis e...
AbstractSensory signals regulate multiple developmental and behavioral circuits in C. elegans, provi...
AbstractSensory signals regulate multiple developmental and behavioral circuits in C. elegans, provi...
Animals integrate changes in external and internal environments to generate behavior. While neural c...
An important function of the nervous system is to respond to changes in the environment. The nematod...
Animals integrate changes in external and internal environments to generate behavior. While neural c...
Neural circuits detect and process environmental changes to drive appropriate food-seeking or toxin-...
Animal internal state is modulated by nutrient intake, resulting in behavioral responses to changing...
SummaryThe insulin-like signaling pathway is known to regulate fat metabolism, dauer formation, and ...
The nematode Caenorhabditis elegans has complex, naturally variable behavioral responses to environm...
SummaryThe insulin-like signaling pathway is known to regulate fat metabolism, dauer formation, and ...
The nematode Caenorhabditis elegans has complex, naturally variable behavioral responses to environm...
The relationship between fat accumulation and metabolic disorders, such as obesity, is well document...
To accommodate complex and changing environmental conditions, animals have evolved mechanisms to mod...