Sexual reproduction in plagiogrammacean diatoms: First insights into the early pennates

PLoS One. 2017 Aug 16;12(8):e0181413. doi: 10.1371/journal.pone.0181413. eCollection 2017.

Abstract

The genera Plagiogramma and Dimeregramma are members of a small, but evolutionarily important group of diatoms, the "basal" araphids. They are sister to all other pennates, both araphid and raphid taxa. Thus, their phylogenetic position carries the potential for providing insights into the earliest pennates. We documented sexual reproduction, mating system and sex cell development in the first members of the "basal" araphid clade ever investigated. The mating system in all these species involved heterothally. It was, however, more complex in P. tsawwassen, where in addition to heterothallic clones, intraclonal and polysexual clones also exist. Auxospore development and wall structure was similar in all three species and demonstrated several characters also reported from "core" araphids. Of these, vigorous, pseudopodial motility of male secondary spermatocytes and gametes was most notable because it indicates that this character was likely present in the last common ancestor of all the pennates. Pseudopodial motility of the male sex cells might have afforded sufficient compensation and/or benefits to the emerging pennates for replacing flagellated sperm, present in centrics. The characters thus far uniquely present among our plagiogrammaceans but not reported from other pennates were: the "gametic" fusion between sex-compatible secondary spermatocytes, in some cases before completion of Meiosis II in males, transverse perizonial bands produced all together or in quick succession rather than being added to the auxospore apex one at a time, and expanding auxospores with 3-4 nuclei. An initial epivalve, similar in morphology to what in some diatoms had been interpreted as a "longitudinal" perizonium, may be more widespread among pennates than thus far appreciated. In addition, we discovered two species new to science (D. acutumontgo, P. tsawwassen), and refined delineation of P. staurophorum by including metric data from the original material.

MeSH terms

  • Biological Evolution
  • Cell Wall / ultrastructure
  • Diatoms / classification*
  • Diatoms / genetics
  • Diatoms / physiology*
  • Diatoms / ultrastructure
  • Germ Cells
  • Phylogeny
  • Reproduction*

Grants and funding

This work was supported by a Natural Sciences and Engineering Research Council of Canada (http://www.nserc-crsng.gc.ca/) Discovery Grant and the Mount Allison University Professional Development Fund awarded to IK. Neither NSERC Discovery Grants nor Professional Development Funds are associated with a grant number. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.