Researchers have developed a new imaging technique to observe active gene expression in real time. They found that four molecules work together to control the timing of each stage of the C. elegans ...
Caenorhabditis elegans has long been established as a model organism for investigating the molecular determinants of organogenesis and cell fate specification. Vulval development exemplifies a highly ...
Scientists at the FMI and the University of California-Santa Cruz have found that similar molecular machineries control daily ...
A new protocol extends live imaging time for C. elegans larvae and adults using light sheet fluorescence microscopy from 20 minutes to more than 2 hours, while avoiding heat stress in the specimen.
Insulin and epidermal signals independently shape sexually dimorphic neurite branching in C. elegans
Sexual state-regulated insulin signaling and vulval epithelial cues engage distinct pathways to remodel the F-actin ...
A research group led by Prof. GUANG Shouhong from the University of Science and Technology of China (USTC) of the Chinese Academy of Sciences, collaborating with Prof. FENG Xuezhu from the First ...
The long-term objective of my research is to contribute to our understanding of how cell fates are specified during development. The free-living soil nematode, Caenorhabditis elegans, is an excellent ...
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Genes pick up DNA that could save species from dying out
Recent research has uncovered a fascinating mechanism in the nematode worm C. elegans that could have profound implications ...
Understanding how fat molecules are distributed and function in living organisms is key to uncovering mechanisms of aging, disease, and metabolism. Caenorhabditis elegans, a transparent roundworm, is ...
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