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Expansion of TALE homeobox genes and the evolution of spiralian development.

Yoshiaki MorinoNaoki HashimotoHiroshi Wada
Published in: Nature ecology & evolution (2017)
Spiralians, including molluscs, annelids and platyhelminths, share a unique development process that includes the typical geometry of early cleavage and early segregation of cell fate in blastomeres along the animal-vegetal axis. However, the molecular mechanisms underlying this early cell fate segregation are largely unknown. Here, we report spiralian-specific expansion of the three-amino-acid loop extension (TALE) class of homeobox genes. During early development, some of these TALE genes are expressed in staggered domains along the animal-vegetal axis in the limpet Nipponacmea fuscoviridis and the polychaete Spirobranchus kraussii. Inhibition or overexpression of these genes alters the developmental fate of blastomeres, as predicted by the gene expression patterns. These results suggest that the expansion of novel TALE genes plays a critical role in the establishment of a novel cell fate segregation mechanism in spiralians.
Keyphrases
  • cell fate
  • genome wide
  • gene expression
  • bioinformatics analysis
  • genome wide identification
  • transcription factor
  • cell proliferation