Direct relationship between osmotic and ionic conforming behavior and tissue water regulatory capacity in echinoids

Comp Biochem Physiol A Mol Integr Physiol. 2013 Mar;164(3):466-76. doi: 10.1016/j.cbpa.2012.12.010. Epub 2012 Dec 20.

Abstract

Echinoderms are considered marine osmoconforming invertebrates. However, many are intertidal or live next to estuaries, tolerating salinity changes and showing extracellular gradients to dilute seawater. Three species of echinoids - Lytechinus variegatus, which can occur next to estuarine areas, the rocky intertidal Echinometra lucunter, and the mostly subtidal Arbacia lixula - were submitted to a protocol of stepwise (rate of 2-3 psu/h) dilution, down to 15 psu, or concentration, up to 45 psu, of control seawater (35 psu). Coelomic fluid samples were obtained every hour. The seawater dilution experiment lasted 8h, while the seawater concentration experiment lasted 6h. Significant gradients (40-90% above value in 15 psu seawater) for osmolality, sodium, magnesium, and potassium were shown by L. variegatus and E. lucunter. A. lixula showed the smallest gradients, displaying the strongest conforming behavior. The esophagus of the three species was challenged in vitro with 20 and 50% osmotic shocks (hypo- and hyperosmotic). A. lixula, the most "conforming" species, showed the highest capacity to avoid swelling of its tissues upon the -50% hyposmotic shock, and was also the species less affected by salinity changes concerning the observation of spines and ambulacral feet movement in the whole-animal experiments. Thus, the most conforming species (A. lixula) displayed the highest capacity to regulate tissue water/volume, and was also the most euryhaline among the three studied species. In addition, tissues from all three species swelled much more than they shrank under osmotic shocks of same magnitude. This distinct trend to gain water, despite the capacity to hold some gradients upon seawater dilution, helps to explain why echinoderms cannot be fully estuarine, or ever enter fresh water.

Publication types

  • Comparative Study
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Arbacia / anatomy & histology
  • Arbacia / metabolism*
  • Arbacia / physiology
  • Behavior, Animal / physiology
  • Chlorides / metabolism
  • Esophagus / anatomy & histology
  • Esophagus / metabolism
  • Immune System / metabolism
  • Lytechinus / anatomy & histology
  • Lytechinus / metabolism*
  • Lytechinus / physiology
  • Magnesium / metabolism
  • Organ Size
  • Osmotic Pressure
  • Potassium / metabolism
  • Salinity
  • Salt Tolerance
  • Sodium / metabolism
  • Species Specificity
  • Water-Electrolyte Balance*

Substances

  • Chlorides
  • Sodium
  • Magnesium
  • Potassium