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- 01GJDA9K6V0NJEQG50QQX1Z8SS classification A1.
- 01GJDA9K6V0NJEQG50QQX1Z8SS date "2023".
- 01GJDA9K6V0NJEQG50QQX1Z8SS language "eng".
- 01GJDA9K6V0NJEQG50QQX1Z8SS type journalArticle.
- 01GJDA9K6V0NJEQG50QQX1Z8SS hasPart 01HABW34DABTZG96NJD2B9QJG6.pdf.
- 01GJDA9K6V0NJEQG50QQX1Z8SS subject "Biology and Life Sciences".
- 01GJDA9K6V0NJEQG50QQX1Z8SS doi "10.1002/dvdy.551".
- 01GJDA9K6V0NJEQG50QQX1Z8SS issn "1058-8388".
- 01GJDA9K6V0NJEQG50QQX1Z8SS issn "1097-0177".
- 01GJDA9K6V0NJEQG50QQX1Z8SS issue "5".
- 01GJDA9K6V0NJEQG50QQX1Z8SS volume "252".
- 01GJDA9K6V0NJEQG50QQX1Z8SS abstract "Background Syngnathids are a highly derived and diverse fish clade comprising the pipefishes, pipe-horses, and seahorses. They are characterized by a plethora of iconic traits that increasingly capture the attention of biologists, including geneticists, ecologists, and developmental biologists. The current understanding of the origins of their derived body plan is, however, hampered by incomplete and limited descriptions of the early syngnathid ontogeny. Results We provide a comprehensive description of the development of Nerophis ophidion, Syngnathus typhle, and Hippocampus erectus from early cleavage stages to release from the male brooding organ and beyond, including juvenile development. We comparatively describe skeletogenesis with a particular focus on dermal bony plates, the snout-like jaw morphology, and appendages. Conclusions This most comprehensive and detailed account of syngnathid development to date suggests that convergent phenotypes (e.g., reduction and loss of the caudal fins), likely arose by distinct ontogenetic means in pipefishes and seahorses. Comparison of the ontogenetic trajectories of S. typhle and H. erectus provides indications that characteristic features of the seahorse body plan result from developmental truncation. Altogether, this work provides a valuable resource and framework for future research to understand the evolution of the outlandish syngnathid morphology from a developmental perspective.".
- 01GJDA9K6V0NJEQG50QQX1Z8SS author F4AC243C-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GJDA9K6V0NJEQG50QQX1Z8SS author urn:uuid:67ea77ba-9728-4cee-99f7-5c2a0fc0c129.
- 01GJDA9K6V0NJEQG50QQX1Z8SS author urn:uuid:ac689793-8d0e-4e58-901b-85f9eff2a883.
- 01GJDA9K6V0NJEQG50QQX1Z8SS author urn:uuid:dc5c53d0-70d9-4f3f-94ba-ce9dd37e7cad.
- 01GJDA9K6V0NJEQG50QQX1Z8SS dateCreated "2022-11-21T14:43:22Z".
- 01GJDA9K6V0NJEQG50QQX1Z8SS dateModified "2024-12-12T20:28:45Z".
- 01GJDA9K6V0NJEQG50QQX1Z8SS name "A comparative analysis of the ontogeny of syngnathids (pipefishes and seahorses) reveals how heterochrony contributed to their diversification".
- 01GJDA9K6V0NJEQG50QQX1Z8SS pagination urn:uuid:555b3f2e-c06d-46c4-b529-52164f358bac.
- 01GJDA9K6V0NJEQG50QQX1Z8SS sameAs LU-01GJDA9K6V0NJEQG50QQX1Z8SS.
- 01GJDA9K6V0NJEQG50QQX1Z8SS sourceOrganization urn:uuid:7aa26531-ce87-4638-b6f3-f35331098ff5.
- 01GJDA9K6V0NJEQG50QQX1Z8SS type A1.