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Autori principali: Vinther, Jakob, Parry, Luke A, Lee, Mirinae, Nielsen, Morten Lunde, Oh, Yeongju, Park, Changkun, Kihm, Ji-Hoon, DeVivo, Giacinto, Harper, David A T, Nielsen, Arne T, Park, Tae-Yoon S
Natura: Artículo científico
Lingua:en
Pubblicazione: Science advances 2025
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Accesso online:https://pubmed.ncbi.nlm.nih.gov/40700488/
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author Vinther, Jakob
Parry, Luke A
Lee, Mirinae
Nielsen, Morten Lunde
Oh, Yeongju
Park, Changkun
Kihm, Ji-Hoon
DeVivo, Giacinto
Harper, David A T
Nielsen, Arne T
Park, Tae-Yoon S
author_facet Vinther, Jakob
Parry, Luke A
Lee, Mirinae
Nielsen, Morten Lunde
Oh, Yeongju
Park, Changkun
Kihm, Ji-Hoon
DeVivo, Giacinto
Harper, David A T
Nielsen, Arne T
Park, Tae-Yoon S
Vinther, Jakob
Parry, Luke A
Lee, Mirinae
Nielsen, Morten Lunde
Oh, Yeongju
Park, Changkun
Kihm, Ji-Hoon
DeVivo, Giacinto
Harper, David A T
Nielsen, Arne T
Park, Tae-Yoon S
collection PubMed - marine biology
contents A fossilized ventral ganglion reveals a chaetognath affinity for Cambrian nectocaridids. Vinther, Jakob Parry, Luke A Lee, Mirinae Nielsen, Morten Lunde Oh, Yeongju Park, Changkun Kihm, Ji-Hoon DeVivo, Giacinto Harper, David A T Nielsen, Arne T Park, Tae-Yoon S Animals Fossils Phylogeny Ganglia Biological Evolution Nectocaridids are enigmatic Palaeozoic animals with a controversial phylogenetic position. Previous hypotheses have placed them in their own phylum, chordates, molluscs (specifically cephalopods), or radiodont panarthropods. We describe here a nectocaridid, gen. et sp. nov. from the early Cambrian (~519 million years) Sirius Passet Lagerstätte of North Greenland. Key specimens preserve paired, phosphatized arcuate structures consistent with preservation of a ventral ganglion, a feature characteristic of extant and fossil chaetognaths, including the amiskwiid also from Sirius Passet. shares a gnathostomulid-like jaw apparatus, lateral fins, subterminal anus, and large antennae with and , placing nectocaridids in the chaetognath stem lineage. The complex sensory anatomy of nectocaridids, which is partially shared with other extinct amiskwiids, highlights a more dynamic predatory lifestyle much higher in the trophic food chain during early chaetognath evolution.
format Artículo científico
id pubmed_40700488
institution PubMed
language en
publishDate 2025
publisher Science advances
record_format pubmed
spellingShingle A fossilized ventral ganglion reveals a chaetognath affinity for Cambrian nectocaridids.
Vinther, Jakob
Parry, Luke A
Lee, Mirinae
Nielsen, Morten Lunde
Oh, Yeongju
Park, Changkun
Kihm, Ji-Hoon
DeVivo, Giacinto
Harper, David A T
Nielsen, Arne T
Park, Tae-Yoon S
Animals
Fossils
Phylogeny
Ganglia
Biological Evolution
A fossilized ventral ganglion reveals a chaetognath affinity for Cambrian nectocaridids. Vinther, Jakob Parry, Luke A Lee, Mirinae Nielsen, Morten Lunde Oh, Yeongju Park, Changkun Kihm, Ji-Hoon DeVivo, Giacinto Harper, David A T Nielsen, Arne T Park, Tae-Yoon S Animals Fossils Phylogeny Ganglia Biological Evolution Nectocaridids are enigmatic Palaeozoic animals with a controversial phylogenetic position. Previous hypotheses have placed them in their own phylum, chordates, molluscs (specifically cephalopods), or radiodont panarthropods. We describe here a nectocaridid, gen. et sp. nov. from the early Cambrian (~519 million years) Sirius Passet Lagerstätte of North Greenland. Key specimens preserve paired, phosphatized arcuate structures consistent with preservation of a ventral ganglion, a feature characteristic of extant and fossil chaetognaths, including the amiskwiid also from Sirius Passet. shares a gnathostomulid-like jaw apparatus, lateral fins, subterminal anus, and large antennae with and , placing nectocaridids in the chaetognath stem lineage. The complex sensory anatomy of nectocaridids, which is partially shared with other extinct amiskwiids, highlights a more dynamic predatory lifestyle much higher in the trophic food chain during early chaetognath evolution.
title A fossilized ventral ganglion reveals a chaetognath affinity for Cambrian nectocaridids.
topic Animals
Fossils
Phylogeny
Ganglia
Biological Evolution
url https://pubmed.ncbi.nlm.nih.gov/40700488/