Zebrafish neurobehavioral phenomics applied as the behavioral warning methods for fingerprinting endocrine disrupting effect by lead exposure at environmentally relevant level

Chemosphere. 2019 Sep:231:315-325. doi: 10.1016/j.chemosphere.2019.05.146. Epub 2019 May 20.

Abstract

Environmental lead (Pb) exposure is a great hazard to the public health. Although environmentally relevant Pb poisoning is preventable, insidious Pb contaminants are still a major threat to human health. Herein, we reported that exposure to Pb at environmentally relevant concentration level (1 μg/L, 10 μg/L and 100 μg/L), disturbed the courtship behavior of adult male zebrafish and further altered the transcriptional patterns of key genes involved in testicular steroidogenesis (igf3, amh, piwil1, lhcgr, fshr, cyp11c1, star, cyp19a1a, cyp19a1b) and apoptosis (bax, cytoC, caspase 9, caspase 3, puma). Both the behavioral and the transcriptional profiles share a similar biphasic dose response, with stimulatory effects after low-level exposure and inhibitory effects after high-level exposure. This results revealed the endocrine disrupting effects of Pb even at an environmentally relevant level within the concentration range of ambient water quality criteria (AWQC) and the reliability of locomotion fingerprint as the indicator for detecting the risk induced by Pb pollution. Current research, for the first time, employed the ZebraTower system as the biological early warning system (BEWS) to find that Pb exerted biphasic effects on the courtship behavior and endocrine regulation of male adult zebrafish. Methodologically, we firstly propose an efficient solution to monitor and assess the risk of Pb exposure by combining the (BEWS) and data analyzing methods such as zebrafish phenomics, which would make a contribution to the detection and prevention of environmentally relevant Pb poisoning.

Keywords: Aquatic lead (Pb) contaminants; Behavioral phenomics; Biological early warning system (BEWS); Endocrine disrupting effect; Public health risk assessment.

MeSH terms

  • Animals
  • Behavior, Animal / drug effects
  • Caspase 3
  • Endocrine Disruptors / toxicity*
  • Endocrine System / drug effects
  • Environmental Pollution
  • Humans
  • Lead / toxicity*
  • Male
  • Reproducibility of Results
  • Testis / drug effects
  • Water Pollutants, Chemical / toxicity*
  • Zebrafish / physiology

Substances

  • Endocrine Disruptors
  • Water Pollutants, Chemical
  • Lead
  • CASP3 protein, human
  • Caspase 3