4.0 Article

The Lophotrochozoan TGF-beta signalling cassette - diversification and conservation in a key signalling pathway

期刊

INTERNATIONAL JOURNAL OF DEVELOPMENTAL BIOLOGY
卷 58, 期 6-8, 页码 533-549

出版社

UNIV BASQUE COUNTRY UPV-EHU PRESS
DOI: 10.1387/ijdb.140080nk

关键词

TGF-beta; Lophotrochozoa; BMP; Activin; singnalling

资金

  1. Elizabeth Hannah Jenkinson Fund
  2. Royal Society of New Zealand Marsden Grant [UOO0602]
  3. Clarendon Fund studentship
  4. Spanish MICINN
  5. UAM
  6. MICINN [CGL2011-29916]

向作者/读者索取更多资源

TGF-beta signalling plays a key role in the patterning of metazoan body plans and growth. It is widely regarded as a 'module' capable of co-option into novel functions. The TGF-beta pathway arose in the Metazoan lineage, and while it is generally regarded as well conserved across evolutionary time, its components have been largely studied in the Ecdysozoa and Deuterostomia.The recent discovery of the Nodal molecule in molluscs has underlined the necessity of untangling this signalling network in lophotrochozoans in order to truly comprehend the evolution, conservation and diversification of this key pathway. Three novel genome resources, the mollusc Patella vulgate, annelid Pomatoceros lamarcki and rotifer Brachionus plicatilis, along with other publicly available data, were searched for the presence of TGF-beta pathway genes. Bayesian and Maximum Likelihood analyses, along with some consideration of conserved domain structure, was used to confirm gene identity. Analysis revealed conservation of key components within the canonical pathway, allied with extensive diversification of TGF-beta ligands and partial loss of genes encoding pathway inhibitors in some lophotrochozoan lineages. We fully describe the TGF-beta signalling cassette of a range of lophotrochozoans, allowing firm inference to be drawn as to the ancestral state of this pathway in this Superphylum. The TGF-beta signalling cascade's reputation as being highly conserved across the Metazoa is reinforced. Diversification within the activin-like complement, as well as potential wide loss of regulatory steps in some Phyla, hint at specific evolutionary implications for aspects of this cascade's functionality in this Superphylum.

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