Patterning embryos with genetic oscillations.
In plain English
AI plain-English summaryA zebrafish embryo’s backbone forms not all at once, but segment by segment, driven by a genetic clock that ticks in its cells. This project investigates the “segmentation clock”—a set of genes that turn on and off in rhythmic waves, telling cells where to build vertebrae. When this clock breaks, babies can be born with fused or missing vertebrae. Scientists know the clock exists, but they do not understand how individual cells keep time, how they synchronise with neighbours, or what stops the clock once the backbone is complete. The researcher will watch the clock tick in real time using specially engineered zebrafish whose cells glow each time a clock gene activates. If successful, this work will reveal the fundamental rules of how genetic oscillators build body patterns. That knowledge could eventually help explain why some human embryos develop spinal defects, and might guide efforts to grow replacement vertebrae or repair spinal injuries. But this is primarily fundamental science—it asks how a living system assembles itself with precision, a question that has no immediate practical payoff but whose answer could reshape developmental biology.
View original technical description
View the original record at the funder ↗
Researchers
Related Research
Grants with similar aims, by meaning.
Original classification
Senior Research Fellowship BasicPlain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research. Is something wrong? Let us know