Identification of three cell populations from the shell gland of a bivalve mollusc

Dev Genes Evol. 2020 Jan;230(1):39-45. doi: 10.1007/s00427-020-00646-9. Epub 2020 Jan 20.

Abstract

The molluscan larval shell formation is a complicated process. There is evidence that the mantle of the primary larva (trochophore) contains functionally different cell populations with distinct gene expression profiles. However, it remains unclear how these cells are specified. In the present study, we identified three cell populations from the shell gland in earlier stages (gastrula) from the bivalve mollusc Crassostrea gigas. These cell populations were determined by analyzing the co-expression relationships among six potential shell formation (pSF) genes using two-color hybridization. The three cell populations, which we designated as SGCPs (shell gland cell populations), formed a concentric-circle pattern from outside to inside of the shell gland. SGCP I was located in the outer edge of the shell gland and the cells expressed pax2/5/8, gata2/3, and bmp2/4. SGCP II was located more internally and the cells expressed two engrailed genes. The last population, SGCP III, was located in the central region of the shell gland and the cells expressed lox4. Determination of the gene expression profiles of SGCPs would help trace their origins and fates and elucidate how these cell populations are specified. Moreover, potential roles of the SGCPs, e.g., development of sensory cells and shell biogenesis, are suggested. Our results reveal the internal organization of the embryonic shell gland at the molecular level and add to the knowledge of larval shell formation.

Keywords: Cell population; Mollusc; Shell formation gene; Shell gland.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animal Shells / cytology
  • Animal Shells / metabolism
  • Animals
  • Crassostrea / cytology*
  • Crassostrea / genetics
  • Crassostrea / growth & development
  • Crassostrea / metabolism
  • Exocrine Glands / cytology
  • Exocrine Glands / metabolism
  • Female
  • Male
  • Transcription Factors / metabolism

Substances

  • Transcription Factors