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Grilled Cheese is a product of Village Compute

Version devBuilt at: 2026-10-10 01:38:52 EDT

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@zebrafishrock.bsky.socialOct 10, 2026, 7:41 AM

More cool #teleost work!

@rafaelmelchor.bsky.socialSep 19, 2026, 10:11 AM

…They’re both awesome (in different ways) #teleost fish.
What makes your clip perfect, for me, is the little perch below towards the end🤗…I caught lots of those, but never, though I observed many(& many more jack pike) the mighty hunter, killer, pike - I wish🤔 - just too ferociously clever🤓 🌱🕊️

2/2

@sicbjournals.bsky.socialSep 8, 2026, 11:25 AM

IOB
Parallel Reduction in Skeletal Density During Benthic to #Pelagic Transitions in Baikal #Sculpins

Brayan Gutierrez et al

doi.org/10.1093/iob/...

"Habitat transitions are a major driver of #morphological #evolution..."

#science #teleost #fish

While freshwater #sculpins (Cottidae, Perciformes) are usually benthic, two genera in Lake Baikal, Comephorus and Cottocomephorus, have independently evolved into mid-water niches. As sculpins lack a swim bladder, these lineages instead improved buoyancy through reduced skeletal density and increased lipid stores. Using micro-computed #tomography and two-dimensional morphometrics, we characterized skeletal evolution in six benthic, two benthopelagic, and two pelagic species across the Baikal sculpin radiation. Parallel changes to mineral density, porosity, and thickness evolved independently in #pelagic and benthopelagic clades, with mineral density showing the most consistent and significant reductions. Density reductions occurred throughout the skull in pelagic and benthopelagic species. The basibranchials and neurocranium exhibited the lowest overall bone density across all cranial elements. While the jaws maintained the highest absolute density values among the bones we measured, they also showed the greatest proportional reduction in density associated with pelagic habitat use, with a 56.86% decrease in percentage hydroxyapatite and a 21.39% increase in porosity. #Morphometric analyses further identified parallel evolution toward an elongate body shape, reduced and posteriorly shifted eyes, and elevated fin insertion in pelagic and benthopelagic taxa. These results demonstrate a repeated skeletal lightening and body shape changes accompanying benthic-to-pelagic transitions. This pattern mirrors other benthic-to-pelagic transitions in teleosts that lack swim bladders, highlighting shared biomechanical and microstructural solutions to life in the open water.