English

A model of chloroplast growth regulation in mesophyll cells

Subcellular Processes 2015-09-03 v1

Abstract

Chloroplasts regulate their growth to optimize photosynthesis. Quantitative data shows that the ratio of total chloroplast area to mesophyll cell area is constant across different cells within a single species, and also across species. Wild-type chloroplasts exhibit little scatter around this trend; highly irregularly-shaped mutant chloroplasts exhibit more scatter. Here we propose a model motivated by a bacterial quorum-sensing model consisting of a switch-like signalling network that turns off chloroplast growth. We calculated the dependence of the location of the relevant saddle-node bifurcation on the geometry of the chloroplasts. Our model exhibits a linear trend, with linearly growing scatter dependent on chloroplast shape, consistent with the data. When modelled chloroplasts are of a shape that grows with a constant area to volume ratio (disks, cylinders) we find a linear trend with minimal scatter. Chloroplasts with area and volume that do not grow proportionally (spheres) exhibit a linear trend with additional scatter.

Keywords

Cite

@article{arxiv.1509.00811,
  title  = {A model of chloroplast growth regulation in mesophyll cells},
  author = {Kelly M. Paton and Lisa Anderson and Pauline Flottat and Eric N. Cytrynbaum},
  journal= {arXiv preprint arXiv:1509.00811},
  year   = {2015}
}