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. 2018 Jul 4;285(1882):20180367.
doi: 10.1098/rspb.2018.0367.

Artificial light at night decreases metamorphic duration and juvenile growth in a widespread amphibian

Affiliations

Artificial light at night decreases metamorphic duration and juvenile growth in a widespread amphibian

Kacey L Dananay et al. Proc Biol Sci. .

Abstract

Artificial light at night (ALAN) affects over 20% of the earth's surface and is estimated to increase 6% per year. Most studies of ALAN have focused on a single mechanism or life stage. We tested for indirect and direct ALAN effects that occurred by altering American toads' (Anaxyrus americanus) ecological interactions or by altering toad development and growth, respectively. We conducted an experiment over two life stages using outdoor mesocosms and indoor terraria. In the first phase, the presence of ALAN reduced metamorphic duration and periphyton biomass. The effects of ALAN appeared to be mediated through direct effects on toad development, and we found no evidence for indirect effects of ALAN acting through altered ecological interactions or colonization. In the second phase, post-metamorphic toad growth was reduced by 15% in the ALAN treatment. Juvenile-stage ALAN also affected toad activity: in natural light, toads retreated into leaf litter at night whereas ALAN toads did not change behaviour. Carry-over effects of ALAN were also present; juvenile toads that had been exposed to larval ALAN exhibited marginally increased activity. In this time frame and system, our experiments suggested ALAN's effects act primarily through direct effects, rather than indirect effects, and can persist across life stages.

Keywords: American toad; Bufo americanus; direct and indirect effects; ecological light pollution; legacy effects; night lighting.

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Conflict of interest statement

The authors have no competing interests.

Figures

Figure 1.
Figure 1.
Effects of light and toad treatments on hylid colonization. Hylid abundance was significantly affected by the interaction between ALAN and toad presence. Tukey post hoc tests indicated that hylid abundance was significantly higher when toads were present under natural light conditions compared to all other treatments. Letters represent significant (p < 0.05) differences between treatments. Error bars represent standard error.
Figure 2.
Figure 2.
Effects of juvenile-stage light exposure on juvenile toad mass. Juvenile toad growth was reduced by exposure to juvenile-stage ALAN. Triangles represent ALAN light treatments, circles represent natural light treatments. Error bars represent standard error.
Figure 3.
Figure 3.
The proportion of visible toads in the ALAN treatment did not differ between day and night observations, whereas toads in natural light treatments were more active during the day than at night. Triangles represent ALAN treatments and circles represent natural light treatments. Error bars represent standard error.

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