Methyl farnesoate regulatory mechanisms underlying photoperiod-dependent sex determination in the freshwater crustacean Daphnia magna

J Appl Toxicol. 2021 Feb;41(2):216-223. doi: 10.1002/jat.4035. Epub 2020 Jul 13.

Abstract

Freshwater zooplankton Daphnia magna has been widely used in ecotoxicology studies. During the last 20 years, it has been demonstrated that the topical application of juvenile hormone (JH) or JH analogs to mother daphnids induce male offspring production. Based on this finding, an in vivo screening validation method for chemicals with JH agonistic effect has developed. Although this screening system successfully identified a number of JH-like chemicals, molecular mechanisms underlying the male sex-determining process remain largely unknown. To address this issue, we established a reliable male- or female-producing system using Daphnia pulex WTN6 strain by changing the rearing photoperiod. Taking advantage of this rearing system, we successfully found several factors involving male sex determination such as ionotropic glutamate receptors, protein kinase C and pantothenate. Here, we used two D. magna strains that can also control the production of female or male offspring by photoperiod differences as model species for ecotoxicology studies. We demonstrated that either treatment of antagonist of ionotropic glutamate receptors or inhibitor of protein kinase C strongly suppressed male offspring production even under male-producing conditions. Moreover, we revealed that male sex-determining processes are likely diverged between D. magna and D. pulex based on the current experiment. This study provides a fine experimental method for in vivo screening not only JH agonists but also JH antagonists. Moreover, using daphnids with photoperiod-dependent sex determination manner will hugely contribute to understanding the mode-of-action of JH in daphnids.

Keywords: Daphnia magna; ionotropic glutamate receptor; methyl farnesoate; photoperiod-dependent sex determination; protein kinase C.

Publication types

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

MeSH terms

  • Animals
  • Daphnia / drug effects*
  • Daphnia / genetics*
  • Daphnia / growth & development*
  • Denmark
  • Ecotoxicology / methods
  • Fatty Acids, Unsaturated / toxicity*
  • Female
  • Freshwater Biology
  • Genetic Variation
  • Genotype
  • Male
  • Photoperiod
  • Reproduction / drug effects*
  • Sex Determination Processes / drug effects*
  • Sex Differentiation / drug effects*

Substances

  • Fatty Acids, Unsaturated