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Kazuhide Miyamoto

@miyamoto-evodevo.bsky.social
28 followers 61 following 2 posts

Postdoc | Evo-devo | mayfly development & evolution (← fish fin development & evolution) researchmap.jp/kazuhide_miyamoto?la…

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Reposted by Kazuhide Miyamoto
Isabel Almudi @isabelalmudi.bsky.social · 07/08/2026
What happens when evolution adds an extra pair of eyes? Male mayflies evolve an extra pair of dorsal compound eyes, the Turbanate eyes, thought to help males detect females during mating swarms. we have investigate how this remarkable evolutionary novelty develops. www.biorxiv.org/content/10.6...
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Reposted by Kazuhide Miyamoto
M. Brent Hawkins @homeobox.bsky.social · 22/06/2026
Excited to share the final published version of our work on the evolution of dorsal-ventral patterning in fins and limbs, now up on @currentbiology.bsky.social In review we added new single LARM element deletions to assess their impact on dorsality. Take a look! 🔬🧪🐟🐁 www.cell.com/current-biol...
A scientific figure showing the phenotypic effects of removing individual enhancer elements from the LARM. On the left side of the image are schematic diagrams of the targeted deletions and on the right are fin skeletons showing altered anatomy.
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Reposted by Kazuhide Miyamoto
Marc Robinson-Rechavi @marcrr.ecoevo.social.ap.brid.gy · 10/06/2026
Kazuhide Miyamoto: in fish evolution, ancestral scute developmental mechanisms were co-opted into fin rays, with both paleontological / morphological and transcriptomic evidence #EED2026 Some of the results published: doi.org/10.1038/s41467-026-69180-y
nature.com
Actinotrichia-independent developmental mechanisms of spiny rays facilitate the morphological diversification of Acanthomorpha fish fins - Nature Communications
Fish fins are a good model for studying the evolutionary basis for morphological diversity. Here, they show that variation in cell distribution, signaling intensity, and ECM assembly all contribute to spiny ray diversification in Acanthomorpha fins.
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Reposted by Kazuhide Miyamoto
jsdb1968.bsky.social @jsdb1968.bsky.social · 08/04/2026
カワハギでは棒状コラーゲンを使わないため、骨を作る細胞の配置が自在になりトゲトゲの棘条を作ることが示唆されました。この結果から「棒状コラーゲンを用いないという特徴」により、成長方向が制限されないことで自由で複雑な形への進化した可能性を示唆しました。宮本和英 www.sci.tohoku.ac.jp/news/2026033...
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Reposted by Kazuhide Miyamoto
jsdb1968.bsky.social @jsdb1968.bsky.social · 08/04/2026
魚類の「棘条」と呼ばれる鰭の骨格は、コバンザメの吸盤やアンコウの釣り竿のような多様な形態を持ちます、レインボーフィッシュを用いて、棘条の形成メカニズムを調べ、通常のヒレ骨格の形成には不可欠な棒状コラーゲンが、棘条の形成には使われていないことを発見しました。 www.nature.com/articles/s41...
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Kazuhide Miyamoto @miyamoto-evodevo.bsky.social · 27/03/2026
Happy to share the version of record, published in Nature communications yesterday!
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Kazuhide Miyamoto @miyamoto-evodevo.bsky.social · 15/02/2026
Our new paper 𓆟 is out in Nature Communications! Using rainbowfish, we elucidate the differences between spiny and soft rays. Furthermore, we investigated the cellular state of the thorny spine in filefish and discuss how spiny rays diverged in acanthomorph fishes. www.nature.com/articles/s41...
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