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Opposing roles for Bmp signalling during the development of electrosensory lateral line organs.

Alexander S Campbell | Martin Minařík | Roman Franěk | Michaela Vazačová | Miloš Havelka | David Gela | Martin Pšenička | Clare V H Baker
eLife | 2025

The lateral line system enables fishes and aquatic-stage amphibians to detect local water movement via mechanosensory hair cells in neuromasts, and many species to detect weak electric fields via electroreceptors (modified hair cells) in ampullary organs. Both neuromasts and ampullary organs develop from lateral line placodes, but the molecular mechanisms underpinning ampullary organ formation are understudied relative to neuromasts. This is because the ancestral lineages of zebrafish (teleosts) and Xenopus (frogs) independently lost electroreception. We identified Bmp5 as a promising candidate via differential RNA-seq in an electroreceptive ray-finned fish, the Mississippi paddlefish (Polyodon spathula; Modrell et al., 2017, eLife 6: e24197). In an experimentally tractable relative, the sterlet sturgeon (Acipenser ruthenus), we found that Bmp5 and four other Bmp pathway genes are expressed in the developing lateral line, and that Bmp signalling is active. Furthermore, CRISPR/Cas9-mediated mutagenesis targeting Bmp5 in G0-injected sterlet embryos resulted in fewer ampullary organs. Conversely, when Bmp signalling was inhibited by DMH1 treatment shortly before the formation of ampullary organ primordia, supernumerary ampullary organs developed. These data suggest that Bmp5 promotes ampullary organ development, whereas Bmp signalling via another ligand(s) prevents their overproduction. Taken together, this demonstrates opposing roles for Bmp signalling during ampullary organ formation.

Pubmed ID: 39745052

Associated grants

  • Agency: Anatomical Society,
    Id: Research Studentship
  • Agency: Cambridge Philosophical Society,
    Id: Research Studentship
  • Agency: Cambridge Isaac Newton Trust,
    Id: Grant 20.07(c)
  • Agency: Ministry of Education, Youth and Sports of the Czech Republic,
    Id: projects CENAKVA (LM2018099) and Biodiversity (CZ.02.1.01/0.0/0.0/16_025/0007370)
  • Agency: Czech Science Foundation,
    Id: project 22-31141J
  • Agency: Biotechnology and Biological Sciences Research Council, United Kingdom
    Id: BB/P001947/1
  • Agency: Cambridge Isaac Newton Trust,
    Id: Grant 20.07[c]
  • Agency: Ministry of Education, Youth and Sports of the Czech Republic,
    Id: projects CENAKVA [LM2018099] and Biodiversity [CZ.02.1.01/0.0/0.0/16_025/0007370]

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This is a list of tools and resources that we have found mentioned in this publication.


BLASTX (tool)

RRID:SCR_001653

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RRID:SCR_002037

Non-profit plasmid repository dedicated to helping scientists around the world share high-quality plasmids. Facilitates archiving and distributing DNA-based research reagents and associated data to scientists worldwide. Repository contains over 65,000 plasmids, including special collections on CRISPR, fluorescent proteins, and ready-to-use viral preparations. There is no cost for scientists to deposit plasmids, which saves time and money associated with shipping plasmids themselves. All plasmids are fully sequenced for validation and sequencing data is openly available. We handle the appropriate Material Transfer Agreements (MTA) with institutions, facilitating open exchange and offering intellectual property and liability protection for depositing scientists. Furthermore, we curate free educational resources for the scientific community including a blog, eBooks, video protocols, and detailed molecular biology resources.

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RRID:SCR_006151

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RRID:SCR_014432

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RRID:SCR_004870

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RRID:SCR_002473

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