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Updated: Jan 17, 2026

Ablation of a Single Cell From Eight-cell Embryos of the Amphipod Crustacean Parhyale hawaiensis
Published on: March 16, 2014
Stepwise changes in gene expression inducing anhydrobiotic state transition and the gene regulatory network in
Yusuke Hiki1, Takahiro G Yamada1, Richard Cornette2
1Graduate School of Science and Technology, Keio University, Yokohama, 223-8522, Japan.
None:
The larva of the sleeping chironomid, Polypedilum vanderplanki, is the only insect capable of extreme desiccation tolerance, known as anhydrobiosis. The larvae can survive near-complete desiccation and, upon rehydration, rapidly resume metabolism and return to their normal life cycle. Activation of genes involved in antioxidant activity, protection of biomolecules, and DNA repair is required for desiccation tolerance. In the desiccation-tolerant P. vanderplanki cell line Pv11, the key factors of the regulatory network for these genes are heat shock factor (Hsf) and nuclear transcription factor Y subunit C (NF-YC). However, how desiccation tolerance is established at the whole-body level remains unknown. To unravel the dynamic response to desiccation at this level, it is necessary to clarify which molecules need to function for desiccation tolerance and when. Here, we newly acquired and analyzed detailed time-series gene expression data to reveal the regulatory mechanisms underlying the transition to an ametabolic state during desiccation. We showed that the acquisition of desiccation tolerance requires the expression of a number of desiccation-inducible genes in a specific order. This order can be explained by a gene regulatory network triggered by nuclear transcription factor Y subunit A (NF-YA) and Sine oculis-related homeobox 4 (Six4). To our knowledge, this is the first report that desiccation tolerance is related to stepwise changes in gene expression in response to desiccation.
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