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Biology subjects

Smith, P. C.

Publications and source records attributed to Smith, P. C..

2 recordsLinked to original sources

Salted roads lead to edema and reduced locomotor function in wood frogs

Human activities have caused massive losses of natural populations across the globe. Like many groups, amphibians have experienced substantial declines worldwide, driven by environmental changes such as habitat conversion, pollution, and disease emergence. Each of these drivers is often found in close association with the presence of roads. Here we report a novel consequence of roads affecting an amphibian native to much of North America, the wood frog (Rana sylvatica). Across 38 populations distributed from southern to central New England, we found that adult wood frogs living adjacent to roads had higher incidence and severity of edema (bloating caused by fluid accumulation) during the breeding season than frogs living away from the influence of roads. This effect was best explained by increased conductivity of breeding ponds, caused by runoff pollution from road salt used for de-icing. Edema severity was negatively correlated with locomotor performance in more northerly populations. Interestingly, northern populations experience more intense winters, which tends to result in more de-icing salt runoff and increased energetic demands associated with overwintering cryoprotection needs. Thus, this emerging consequence of roads appears to impose potential fitness costs associated with locomotion, and these effects might be most impactful on populations living in regions where de-icing is most intense.

ecology

Estradiol Action at the Median Preoptic Nucleus is Necessary and Sufficient for Sleep Suppression in Female Rats

To further our understanding of how gonadal steroids impact sleep biology, we sought to address the mechanism by which proestrus levels of cycling ovarian steroids, particularly estradiol (E2), suppress sleep in female rats. We showed that steroid replacement of proestrus levels of E2 to ovariectomized female rats, suppressed sleep to similar levels as those reported by endogenous ovarian hormones. We further showed that this suppression is due to the high levels of E2 alone, and that progesterone did not have a significant impact on sleep behavior. We found that E2 action within the Median Preoptic Nucleus (MnPO), which contains estrogen receptors (ERs), is necessary for this effect; antagonism of ERs in the MnPO attenuated the E2-mediated suppression of both non-Rapid Eye Movement (NREM) and Rapid Eye Movement (REM) sleep. Finally, we found E2 action at the MnPO is also sufficient for sleep suppression, as direct infusion of E2 into the MnPO suppressed sleep. Based on our findings, we predict proestrus levels of E2 alone, acting at the MnPO, mediate sex-hormone driven suppression of sleep in female rats. Competing Interest StatementMDS is now an employee of Jazz Pharmaceuticals; the views expressed in this manuscript are solely the authors and do not reflect the views, policies or procedures of Jazz Pharmaceuticals.

neuroscience