bioRxiv · 10.1101/2025.02.08.637258
Spatially regulated mRNA decay sharpens expression patterns in the Drosophila embryo
Abstract
The regulation of mRNA decay is important for numerous cellular and developmental processes. Here, we use the patterning gene even-skipped (eve) in the early Drosophila embryo to investigate the contribution of mRNA decay to shaping the mature striped expression pattern. Using mathematical models to analyse live and fixed imaging data, we show that for eve stripes 2 and 4, spatially regulated degradation rates outperform models with constant or mRNA age-dependent decay. Uniform mRNA decay rates perturb definition of eve stripes 2 and 4 in silico, and we show that altering eve mRNA numbers in vivo by changing the UTR results in dysregulation of the anterior-posterior pair-rule network and embryo segmentation defects. Overall, these data demonstrate how eve mRNA instability can function with transcriptional regulation to define sharp expression domain borders. We suggest that spatially regulated mRNA stability may be widely used to sculpt expression patterns during development.
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Love, J. C., Beadle, L. F., Sutcliffe, C., Rattray, M., Ashe, H. L.. 2025-02-09. Spatially regulated mRNA decay sharpens expression patterns in the Drosophila embryo. https://doi.org/10.1101/2025.02.08.637258
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