Signaling at Physical Barriers during Pollen-Pistil Interactions

Int J Mol Sci. 2021 Nov 12;22(22):12230. doi: 10.3390/ijms222212230.

Abstract

In angiosperms, double fertilization requires pollen tubes to transport non-motile sperm to distant egg cells housed in a specialized female structure known as the pistil, mediating the ultimate fusion between male and female gametes. During this journey, the pollen tube encounters numerous physical barriers that must be mechanically circumvented, including the penetration of the stigmatic papillae, style, transmitting tract, and synergid cells as well as the ultimate fusion of sperm cells to the egg or central cell. Additionally, the pollen tube must maintain structural integrity in these compact environments, while responding to positional guidance cues that lead the pollen tube to its destination. Here, we discuss the nature of these physical barriers as well as efforts to genetically and cellularly identify the factors that allow pollen tubes to successfully, specifically, and quickly circumnavigate them.

Keywords: cell adhesion; cell–cell interaction; pectin; plant cell wall; pollen penetration.

Publication types

  • Review

MeSH terms

  • Cell Communication / physiology*
  • Flowers / metabolism*
  • Pollen Tube / metabolism*
  • Pollination / physiology*