Splanchnic Mesoderm: Difference between revisions
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* '''Developmental Mechanism of Limb Field Specification along the Anterior-Posterior Axis during Vertebrate Evolution'''{{#pmid:29615584|PMID29615584}} "In gnathostomes, limb buds arise from the lateral plate mesoderm at discrete positions along the body axis. Specification of these limb-forming fields can be subdivided into several steps. The lateral plate mesoderm is regionalized into the anterior lateral plate mesoderm (ALPM; cardiac mesoderm) and the posterior lateral plate mesoderm (PLPM). Subsequently, Hox genes appear in a nested fashion in the PLPM and provide positional information along the body axis. The lateral plate mesoderm then splits into the somatic and splanchnic layers. In the somatic layer of the PLPM, the expression of limb initiation genes appears in the limb-forming region, leading to limb bud initiation. Furthermore, past and current work in limbless amphioxus and lampreys suggests that evolutionary changes in developmental programs occurred during the acquisition of paired fins during vertebrate evolution. This review presents these recent advances and discusses the mechanisms of limb field specification during development and evolution, with a focus on the role of Hox genes in this process." | |||
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Search term: [http://www.ncbi.nlm.nih.gov/pubmed/?term=Splanchnic+Mesoderm ''Splanchnic Mesoderm''] | Search term: [http://www.ncbi.nlm.nih.gov/pubmed/?term=Splanchnic+Mesoderm ''Splanchnic Mesoderm''] | ||
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==Overview== | ==Overview== | ||
{{Mesoderm table1}} | {{Mesoderm table1}} |
Revision as of 12:20, 6 March 2019
Embryology - 26 Apr 2024 Expand to Translate |
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Introduction
Draft Page
Some Recent Findings
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More recent papers |
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This table allows an automated computer search of the external PubMed database using the listed "Search term" text link.
More? References | Discussion Page | Journal Searches | 2019 References | 2020 References Search term: Splanchnic Mesoderm |
Older papers |
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These papers originally appeared in the Some Recent Findings table, but as that list grew in length have now been shuffled down to this collapsible table.
See also the Discussion Page for other references listed by year and References on this current page. |
Overview
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Overview: Ectoderm | Mesoderm | Endoderm Layers: ectoderm | mesoderm | endoderm |
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References
Reviews
Lawson LY & Harfe BD. (2017). Developmental mechanisms of intervertebral disc and vertebral column formation. Wiley Interdiscip Rev Dev Biol , 6, . PMID: 28719048 DOI.
Articles
Imuta Y, Koyama H, Shi D, Eiraku M, Fujimori T & Sasaki H. (2014). Mechanical control of notochord morphogenesis by extra-embryonic tissues in mouse embryos. Mech. Dev. , 132, 44-58. PMID: 24509350 DOI.
Lee JD & Anderson KV. (2008). Morphogenesis of the node and notochord: the cellular basis for the establishment and maintenance of left-right asymmetry in the mouse. Dev. Dyn. , 237, 3464-76. PMID: 18629866 DOI.
Search PubMed
Search NLM Online Textbooks: "Splanchnic Mesoderm" : Developmental Biology | The Cell- A molecular Approach | Molecular Biology of the Cell | Endocrinology
Search Pubmed: Splanchnic Mesoderm
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Historic
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Pages where the terms "Historic" (textbooks, papers, people, recommendations) appear on this site, and sections within pages where this disclaimer appears, indicate that the content and scientific understanding are specific to the time of publication. This means that while some scientific descriptions are still accurate, the terminology and interpretation of the developmental mechanisms reflect the understanding at the time of original publication and those of the preceding periods, these terms, interpretations and recommendations may not reflect our current scientific understanding. (More? Embryology History | Historic Embryology Papers) |
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Cite this page: Hill, M.A. (2024, April 26) Embryology Splanchnic Mesoderm. Retrieved from https://embryology.med.unsw.edu.au/embryology/index.php/Splanchnic_Mesoderm
- © Dr Mark Hill 2024, UNSW Embryology ISBN: 978 0 7334 2609 4 - UNSW CRICOS Provider Code No. 00098G