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Development· 2026Q1

C. elegans dauer morphogenesis requires inhibition of DBL-1/BMP signaling by ztf-30

Luciana F. Godoy, M. Eugenia Páez, Nicolás R. Salvatore, yvan doctorovich et al.

Short summary

The zinc-finger transcription factor ZTF-30 is essential for proper dauer morphogenesis in C. elegans by repressing DBL-1/BMP signaling, preventing premature adult collagen expression and ensuring the formation of a protective cuticle and specialized structures.

AI-generated from the title and abstract; the full text is not read.

Key points

  • ZTF-30 is essential for C. elegans dauer morphogenesis but not for developmental arrest.
  • ztf-30 mutants form partial dauers lacking a protective cuticle and specialized structures like alae.
  • ZTF-30 represses the DBL-1/BMP signaling pathway, which is precociously activated in ztf-30 mutants.
  • Reducing DBL-1 signaling rescues the partial dauer phenotype observed in ztf-30 mutants.

AI-generated from the title and abstract; the full text is not read.

Abstract

In response to changing environments, the nematode Caenorhabditis elegans enters a stress-resistant diapause stage to survive adverse conditions. While the pathways controlling developmental arrest, such as insulin/daf-2 and TGF-β/daf-7, are well characterized, mechanisms governing subsequent dauer morphogenesis remain poorly understood. Here, we report that the zinc-finger transcription factor ZTF-30 is dispensable for developmental arrest but essential for dauer morphogenesis. ztf-30 mutants form partial dauers that lack a protective thickened cuticle and specialized structures such as alae. Transcriptomics revealed that ztf-30 mutants precociously activate adult collagen expression and upregulate the DBL-1/BMP signaling pathway, which primarily modulates body size and innate immunity. These data suggest ZTF-30 represses BMP signaling. Consistent with this model, zt-f-30 partial dauers show increased dbl-1 expression, increased DBL-1 signaling phenocopies ztf-30 loss, and reducing DBL-1 signaling rescues the partial dauer phenotype. During larval growth, ztf-30 loss causes ectopic hypodermal dbl-1 expression and increased body length. Ultimately, our findings establish that the active inhibition of DBL-1/BMP signaling is strictly required for proper dauer morphogenesis and we identify ZTF-30 as an essential transcriptional repressor driving this developmental shutdown.

The authors' abstract, as published at the source. Development, 2026 · DOI ↗

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