Phylogenetic characterization of transporter proteins in the cnidarian-dinoflagellate symbiosis

Mol Phylogenet Evol. 2018 Mar:120:307-320. doi: 10.1016/j.ympev.2017.12.007. Epub 2017 Dec 9.

Abstract

Metabolic exchange between cnidarians and their symbiotic dinoflagellates is central to maintaining their mutualistic relationship. Sugars are translocated to the host, while ammonium and nitrate are utilized by the dinoflagellates (Symbiodinium spp.). We investigated membrane protein sequences of each partner to identify potential transporter proteins that move sugars into cnidarian cells and nitrogen products into Symbiodinium cells. We examined the facilitated glucose transporters (GLUT), sodium/glucose cotransporters (SGLT), and aquaporin (AQP) channels in the cnidarian host as mechanisms for sugar uptake, and the ammonium and high-affinity nitrate transporters (AMT and NRT2, respectively) in the algal symbiont as mechanisms for nitrogen uptake. Homologous protein sequences were used for phylogenetic analysis and tertiary structure deductions. In cnidarians, we identified putative glucose transporters of the GLUT family and glycerol transporting AQP proteins, as well as sodium monocarboxylate transporters and sodium myo-inositol cotransporters homologous to SGLT proteins. We hypothesize that cnidarians use GLUT proteins as the primary mechanism for glucose uptake, while glycerol moves into cells by passive diffusion. We also identified putative AMT proteins in several Symbiodinium clades and putative NRT2 proteins only in a single clade. We further observed an upregulation of expressed putative AMT proteins in Symbiodinium, which may have emerged as an adaptation to conditions experienced inside the host cell. This study is the first to identify transporter sequences from a diversity of cnidarian species and Symbiodinium clades, which will be useful for future experimental analyses of the host-symbiont proteome and the nutritional exchange of Symbiodinium cells in hospite.

Keywords: Bioinformatics; Coral; Glucose; Glycerol; Membrane transport; Nitrogen.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Anion Transport Proteins / chemistry
  • Anion Transport Proteins / classification
  • Anion Transport Proteins / genetics
  • Aquaporins / chemistry
  • Aquaporins / classification
  • Aquaporins / genetics
  • Cnidaria / classification*
  • Cnidaria / metabolism
  • Computational Biology
  • Dinoflagellida / classification*
  • Dinoflagellida / metabolism
  • Nitrate Transporters
  • Phylogeny*
  • Protein Structure, Tertiary
  • Sodium-Glucose Transport Proteins / chemistry
  • Sodium-Glucose Transport Proteins / classification
  • Sodium-Glucose Transport Proteins / genetics
  • Symbiosis / physiology

Substances

  • Anion Transport Proteins
  • Aquaporins
  • Nitrate Transporters
  • Sodium-Glucose Transport Proteins