Temperature and Estrogen Alter Predator–Prey Interactions between Fish Species

Author:

Ward J L1,Korn V2,Auxier A N1,Schoenfuss H L2

Affiliation:

1. Department of Biology, Ball State University, 2111 W Riverside Ave, Muncie, IN 47306, USA

2. Aquatic Toxicology Laboratory, Department of Biology, St. Cloud State University, 720 4th Avenue South, St Cloud, MN 56301, USA

Abstract

Synopsis A variety of environmental estrogens are commonly detected in human-impacted waterways. Although much is known about the effects of these environmental estrogens on the reproductive physiology and behavior of individuals within species, comparatively less is known about how these compounds alter the outcomes of interactions between species. Furthermore, few studies have considered how the effects of contaminants are modulated by natural variation in abiotic factors, such as temperature. To help fill this knowledge gap, we conducted a factorial experiment to examine the independent and combined effects of estrone (E1) and temperature on the outcome of predator–prey interactions between two common North American freshwater fishes, fathead minnows (Pimephales promelas) and bluegill sunfish (Lepomis macrochirus). Larval fathead minnows and adult sunfish were exposed to either a low (mean±standard deviation, 90.1 ± 18 ng/L; n = 16) or high (414 ± 147 ng/L; n = 15) concentration of E1 or to a solvent control for 30 days at one of four natural seasonal temperatures (15°C, 18°C, 21°C, and 24°C) before predation trials were performed. Exposure to E1 was associated with a significant increase in larval predation mortality that was independent of temperature. Across all temperature treatments, approximately 74% of control minnows survived; this survivorship significantly exceeded that of minnows exposed to either concentration of E1 (49% and 53% for minnows exposed to the low and high concentrations, respectively). However, exposure to E1 also impaired the prey-capture success of sunfish, partially mitigating predation pressure on exposed minnows. Overall prey-capture success by sunfish showed an inverted U-shaped distribution with temperature, with maximal prey consumption occurring at 21°C. This study illustrates the vulnerability of organismal interactions to estrogenic pollutants and highlights the need to include food web interactions in assessments of risk.

Funder

Minnesota Environment and Natural Resources Trust Fund

Legislative-Citizen Commission on Minnesota Resources

Publisher

Oxford University Press (OUP)

Reference88 articles.

1. Environmental impact of estrogens on human, animal and plant life: a critical review;Adeel;Environ Int,2017

2. Feeling the heat: the effect of acute temperature changes on predator–prey interactions in coral reef fish;Allan;Conserv Physiol,2015

3. Re-evaluating the significance of estrone as an environmental estrogen;Ankley;Environ Sci Technol,2017

4. Endocrine disrupting chemicals in Minnesota lakes - water-quality and hydrological data from 2008 and 2010;Barber;United States Geological Service. p,2012

5. Effects of contaminants and tropic cascade regulation on food chain stability: application to cadmium soil pollution on small mammal-raptor systems;Baudrot;Ecol Model,2018

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