SummaryDiet affects nearly every aspect of animal life such as development, metabolism, behavior, and aging, both directly by supplying nutrients and indirectly through gut microbiota. C. elegans feeds on bacteria, and like other animals, different bacterial diets induce distinct dietary responses in the worm. However, the lack of certain critical tools hampers the use of worms as a model for dietary signaling. Here, we genetically engineered the bacterial strain OP50, the standard laboratory diet for C. elegans, making it compatible for dsRNA production and delivery. Using this RNAi-compatible OP50 strain and the other bacterial strain HT115, we feed worms different diets while delivering RNAi to interrogate the genetic basis underlying di...
SummaryLaboratory-reared Caenorhabditis elegans eat Escherichia coli. A new study demonstrates a str...
Aging is a universal phenomenon that is experienced by diverse organism. Aging can be defined broadl...
<div><p>Most of our knowledge about the regulation of aging comes from mutants originally isolated f...
Diet affects nearly every aspect of animal life such as development, metabolism, behavior, and aging...
SummaryDiet has a substantial impact on cellular metabolism and physiology. Animals must sense diffe...
SummaryDiet greatly influences gene expression and physiology. In mammals, elucidating the effects a...
Diet affects cellular metabolism and organismal life history traits. Pang and Curran (2014) use Caen...
nuture (or a diet of E. coli)? The first genes extending lifespan were identified in the nematode Ca...
Introduction: Diet has a strong influence on aging and lifespan. Thus, understanding the mechanisms ...
Emerging studies have demonstrated that biological responses are greatly influenced by dietary intak...
DoctorGlucose-enriched diets shorten the lifespan of C. elegans. However, genetic factors that media...
Diet is a crucial determinant of organismal biology; interactions between the host, its diet, and it...
C. elegans, both in the wild and in the lab, live on a diet of live bacteria. The bacterial diet pro...
Diet profoundly affects metabolism and incidences of age-related diseases. Animals adapt their physi...
Dietary composition has major effects on physiology. Here, we show that developmental rate, reproduc...
SummaryLaboratory-reared Caenorhabditis elegans eat Escherichia coli. A new study demonstrates a str...
Aging is a universal phenomenon that is experienced by diverse organism. Aging can be defined broadl...
<div><p>Most of our knowledge about the regulation of aging comes from mutants originally isolated f...
Diet affects nearly every aspect of animal life such as development, metabolism, behavior, and aging...
SummaryDiet has a substantial impact on cellular metabolism and physiology. Animals must sense diffe...
SummaryDiet greatly influences gene expression and physiology. In mammals, elucidating the effects a...
Diet affects cellular metabolism and organismal life history traits. Pang and Curran (2014) use Caen...
nuture (or a diet of E. coli)? The first genes extending lifespan were identified in the nematode Ca...
Introduction: Diet has a strong influence on aging and lifespan. Thus, understanding the mechanisms ...
Emerging studies have demonstrated that biological responses are greatly influenced by dietary intak...
DoctorGlucose-enriched diets shorten the lifespan of C. elegans. However, genetic factors that media...
Diet is a crucial determinant of organismal biology; interactions between the host, its diet, and it...
C. elegans, both in the wild and in the lab, live on a diet of live bacteria. The bacterial diet pro...
Diet profoundly affects metabolism and incidences of age-related diseases. Animals adapt their physi...
Dietary composition has major effects on physiology. Here, we show that developmental rate, reproduc...
SummaryLaboratory-reared Caenorhabditis elegans eat Escherichia coli. A new study demonstrates a str...
Aging is a universal phenomenon that is experienced by diverse organism. Aging can be defined broadl...
<div><p>Most of our knowledge about the regulation of aging comes from mutants originally isolated f...