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Abstract
Anthropogenic activities in disturbance-mediated ecosystems might affect certain ecological processes that, in turn, can affect thestability and resilience of those ecosystems. In upland pine forests, land-use practices such as intensive silviculture and fire suppression have contributedto the loss of diversity-rich pine savannahs throughout the southeast. Whereas the application of management strategies has been shownto alter forest structure in pine ecosystems, less is known about how these efforts influence pathways of energy flow and the consumer–resourcerelationships therein. Here, we investigated the effects of frequency of forest management on the trophic structure and resource use of snake communitiesin two pine forests under high and low frequencies of management (i.e., shorter fire return intervals and thinning versus longer firereturn intervals and limited thinning). We sampled snakes, prey, and dominant basal resources across each site for three summers from 2018 to2020. Using stable isotope analysis, we compared community-wide metrics of trophic structure and generated isotopic mixing models to determinethe relative contribution of resources to snake consumers. We found that the high-frequency site supported an increased diversity of snake species,and that species exhibited increased trophic redundancy. The low-frequency site supported fewer snake species that relied on a wider range ofresources, and occupied a wider range of relative tropic positions. Mixing models of consumer–resource relationships, and prey relative abundance,indicated that snakes were more generalized in their resource use in the high-frequency site, and utilized a broader diversity of prey more evenly.In contrast, snakes in the low-frequency site were more specialized in their prey use. We suggest that anthropogenic activities mimicking naturaldisturbances can drive food-web structure in these forest ecosystems. Increased frequency of forest management practices such as prescribed firesand thinning operations might support snake species diversity while also increasing trophic redundancy. Consequently, such management applicationscan lead to greater stability and resilience in pine-forest ecosystems. Our research further highlights the importance of ecological restorationthat incorporates food-web perspectives to ensure the health of pine ecosystems.
Citation
Adams, Connor S.; Saenz, Daniel; Mullin, Stephen J.; Kidd, K. Rebecca; Schalk, Christopher M. 2024. The influence of management practice on the snakes in forest food webs. Herpetological Monographs. 38: 53-73. https://doi.org/10.1655/0733-1347-38.1.53.