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Chitwood, M. C.

Publications and source records attributed to Chitwood, M. C..

2 recordsLinked to original sources

Decreased female survival may explain wild turkey decline

Recent declines in wild turkey (Meleagris gallopavo) populations have prompted extensive research efforts and adjustments to state hunting regulations across the range of wild turkeys. However, research comparing historical and modern vital rates is needed to identify demographic factors that may explain declines. Based on matrix models, adult female survival has the greatest effect on the intrinsic rate of growth. Thus, we hypothesized that changes in annual female survival may explain contemporary declines in populations if that vital rate has decreased concomitant with population declines. We searched peer-reviewed literature, student theses and dissertations, and government reports for empirical estimates of annual female survival across the range of wild turkeys. Of the 51 resulting estimates of annual female survival across all subspecies, most were [≥]0.6 through 2012, but 8 out of 10 estimates post-2012 were lower, consistent with observed trends in population trajectories. We used matrix models to illustrate that the observed change in annual female survival estimates indeed predicts a declining population trajectory, even when other important vital rates are at the high end of the published range of process variation. If the published annual female survival estimates represent those experienced more broadly in populations, our meta-analysis and matrix models indicate that decreases in this vital rate help explain declines observed in populations in some regions. The causative factor(s) associated with the apparent declines are unknown, and little research has evaluated management strategies to increase annual female survival. Accordingly, we encourage wild turkey researchers to focus efforts on producing robust estimates of annual female survival, cause-specific mortality, and rigorous evaluation of management strategies to improve annual female survival.

zoology↗

The search behavior of terrestrial mammals

Animals moving through landscapes need to strike a balance between finding sufficient resources to grow and reproduce while minimizing encounters with predators 1,2. Because encounter rates are determined by the average distance over which directed motion persists 1,3-5, this trade-off should be apparent in individuals movement. Using GPS data from 1,396 individuals across 62 species of terrestrial mammals, we show how predators maintained directed motion ~7 times longer than for similarly-sized prey, revealing how prey species must trade off search efficiency against predator encounter rates. Individual search strategies were also modulated by resource abundance, with prey species forced to risk higher predator encounter rates when resources were scarce. These findings highlight the interplay between encounter rates and resource availability in shaping broad patterns mammalian movement strategies.

ecology↗