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Juarez, B. H.

Publications and source records attributed to Juarez, B. H..

2 recordsLinked to original sources

Androgenic shifts and external cues mediate parental care versus infanticide in mimic poison frogs

Infanticide is widespread across the animal kingdom, but the physiological drivers of infanticide versus care or neglect are relatively unexplored. Here, we identified salient environmental and physiological antecedents of infanticide in the mimic poison frog (Ranitomeya imitator), a biparental amphibian in which female parents feed their tadpoles unfertilized eggs. Specifically, we explored potential environmental cues influencing infant- directed behavior by evaluating changes in the frequency of food provisioning and tadpole mortality after either cross-fostering tadpoles between family units or displacing tadpoles within the terraria of their parents. We found that changes in offspring location reduce care and increase infanticide. Specifically, parents fed their displaced offspring less and, in some instances, tadpole mortality increased. We also investigated whether care and infanticide were related to changes in steroid hormone concentrations in an unfamiliar setting. Infanticide of fertilized eggs and hatchlings in the new territory included cannibalism and was associated with lower testosterone concentrations, but not with changes in corticosterone. Overall, our results support earlier findings that familiarity with offspring location drives parental investment in poison frogs, while indicating an association between low androgen levels and infanticidal behavior in an amphibian. HighlightsO_LIOffspring location drives parental decisions of care vs. infanticide. C_LIO_LIIn novel territories, adults cannibalize conspecific, unrelated young. C_LIO_LILower circulating testosterone in novel territory is associated with infanticide. C_LI

animal behavior and cognition↗

Climate Ecology as a Driver of Global Breeding Periods in Anurans

AimClimate can have profound effects on reproductive behavior and physiology, especially in ectothermic animals. Breeding periods in amphibians have received little attention despite amphibian reliance on climate and water due to their reproductive biology and ecological diversity. The aim of this study is to determine how global climate impacts breeding periods in ectothermic animals through physiology, body size, and microhabitat. LocationAll continents, except Antarctica. Time periodBreeding periods and climate both dating as far back as 1970. Major taxa studied497 (7%) anuran species of 41 (76%) families. MethodsWe used phylogenetic comparative methods to analyze a global dataset of frog breeding periods, climate, body size, and microhabitat for 497 species. ResultsWe found support for a global latitudinal gradient of breeding periods which are longer in the warmer, wetter tropics while shorter in the colder, dryer temperate zone. Latitudinal and non-latitudinal global patterns of breeding period were composites of the same patterns in the temperate and tropical zones. However, the effect of climate and body size in each zone is unique. Breeding periods displayed weak phylogenetic signal and were similar across microhabitats. Main conclusionsBreeding periods show a global latitudinal gradient but this concept breaks down within the tropical zone. Our results are consistent with the importance of physiology in driving breeding periods and we describe how breeding period and body size may exhibit trade-offs which make latitudinal gradients context-dependent. Our results set within an ecophysiological framework have broad implications for understanding reproductive diversity in other ectothermic organisms.

ecology↗