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Burger, I. J.

Publications and source records attributed to Burger, I. J..

2 recordsLinked to original sources

Winter metabolic compensation endangers woodland salamanders under climate change

Understanding the mechanisms that shape species geographic distributions is essential for predicting responses to climate change, particularly under winter conditions, which are warming more rapidly than summer conditions in many temperate ecosystems. Woodland salamanders, which constitute many of the species in the global hotspot of salamander diversity located in the southern Appalachian Mountains of North America, are thought to cope with harsh winters through dormancy and metabolic suppression. We used a field-based experiment to investigate the winter physiology and energetics of a woodland salamander (Plethodon metcalfi). Despite showing histological signs of dormancy, salamanders exhibited higher metabolic rates during winter than the active season when measured at low temperatures associated with winter, consistent with metabolic compensation. High-elevation salamanders also exhibited elevated metabolic rates at cold temperatures compared to low-elevation salamanders, indicative of countergradient metabolic compensation. When integrated into a biophysical species distribution model, depletion of energy stores estimated from winter metabolic rates under current climates accurately predicted the geographic range limits of our focal species. Under future warming scenarios, incorporating winter physiology indicated that 77% of the species range would experience local extinction due to depletion of energy stores. These findings challenge assumptions about winter energetics, reveal metabolic limits on cold-season survival, and highlight metabolic demands during dormancy as a key constraint on responses to climate change.

ecology↗

Sperm quality metrics exhibit annual fluctuations in a critically endangered amphibian managed under human care

The Puerto Rican crested toad (PRCT) is Puerto Ricos only endemic toad and has undergone rapid population decline within the last 40 years. As a hedge against extinction, captive assurance colonies have been established at several zoological institutions for breeding and reintroduction. However, reproductive output has remained low, despite the use of hormone therapies to attempt to bypass missing abiotic cues and stimulate reproductive behaviors. This low output necessitates a better understanding of natural fluctuations in gamete, specifically sperm, quality in captive individuals. To generate an understanding of natural gametic cycles in captive PRCTs, we administered male PRCTs (n = 86) housed under natural temperature and photoperiod cycles with exogenous hormones monthly for one year. Samples were analyzed for motility and concentration to assess variations in sperm quality by month. Spermiation was successfully stimulated every month, but quality fluctuated; sperm motility was highest in June and July, while sperm concentration was highest in December, January, and March. These results indicate that, while hormones can be utilized to stimulate gamete production in PRCTs year-round, sperm quality is not consistent. Furthermore, the seasonal occurrence of peak sperm production of captive males differed from natural peaks reported for wild PRCTs. Our results illustrate the need for more biologically informed strategies for breeding of at-risk anuran populations.

zoology↗