Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Greater prairie‐chicken nest survival and changes in vegetation structure and composition with conservation grazing

View through CrossRef
Abstract Conservation grazing is a management practice to maintain or restore prairie vegetation conditions. The application of conservation grazing in highly fragmented grasslands, such as Minnesota's tallgrass prairie, has received far less study than larger western grasslands of the Great Plains. Because only 1% of tallgrass prairie remains in Minnesota, informed application of this management practice is necessary to ensure area‐sensitive wildlife, like the greater prairie‐chicken ( Tympanuchus cupido pinnatus ), are not adversely affected by management. We studied conservation grazing at a range of stocking rates representative of those used by wildlife managers in northwestern Minnesota to determine its influence on vegetation composition and structure and greater prairie‐chicken nest survival. Each of the 10 study sites had 3 pastures of similar size located in proximity to each other, for which we assigned early grazing (May–June), late grazing (July–August), and no grazing (control) in the grazing treatment year. We located nests by nest‐searching each of the 3 pastures in pre‐grazing (2021), grazing (2022), and post‐grazing (2023) treatment years and by following radio‐marked females to nests. Visual obstruction readings of vegetation within pastures indicated early and late grazing had a significant short‐term effect with a mean height reduction of 11.6 cm between August of the year before grazing (2021, 29.5 ± [SD] 17.9 cm) and August of the grazing year (2022,  = 17.9 ± 8.9 cm). In 2022, we observed an increase in new grass (22.4%) and bare ground (22%) and a reduction in residual grass (33%) and litter (31%) cover in grazed pastures in August. During the nesting season in the post‐grazing year, we saw positive effects of grazing on vegetation for all cover types except bare ground, with new grass increasing 3.6%. However, the beneficial vegetation changes dissipated by August of the post‐grazing year. Mean nest survival was 0.565 (SE = 0.114), 0.315 (SE = 0.066), and 0.797 (SE = 0.129) in pre‐grazing, grazing, and post‐grazing years, respectively, with lowest survival during the grazing year when there was also extensive flooding. The nest survival model including year outperformed a model with an interaction between grazing timing and year, suggesting that interannual variability in weather conditions was more influential than grazing activity. However, the magnitude of the reduction in nest survival in the grazing year was 67.1% in the early‐grazed pasture, compared to 27.5% and 37.3% in control and late pastures, respectively. Additional studies during years with less interannual variation are recommended to resolve possible treatment effects that might have been difficult to detect in the midst of such large interannual variability.
Title: Greater prairie‐chicken nest survival and changes in vegetation structure and composition with conservation grazing
Description:
Abstract Conservation grazing is a management practice to maintain or restore prairie vegetation conditions.
The application of conservation grazing in highly fragmented grasslands, such as Minnesota's tallgrass prairie, has received far less study than larger western grasslands of the Great Plains.
Because only 1% of tallgrass prairie remains in Minnesota, informed application of this management practice is necessary to ensure area‐sensitive wildlife, like the greater prairie‐chicken ( Tympanuchus cupido pinnatus ), are not adversely affected by management.
We studied conservation grazing at a range of stocking rates representative of those used by wildlife managers in northwestern Minnesota to determine its influence on vegetation composition and structure and greater prairie‐chicken nest survival.
Each of the 10 study sites had 3 pastures of similar size located in proximity to each other, for which we assigned early grazing (May–June), late grazing (July–August), and no grazing (control) in the grazing treatment year.
We located nests by nest‐searching each of the 3 pastures in pre‐grazing (2021), grazing (2022), and post‐grazing (2023) treatment years and by following radio‐marked females to nests.
Visual obstruction readings of vegetation within pastures indicated early and late grazing had a significant short‐term effect with a mean height reduction of 11.
6 cm between August of the year before grazing (2021, 29.
5 ± [SD] 17.
9 cm) and August of the grazing year (2022,  = 17.
9 ± 8.
9 cm).
In 2022, we observed an increase in new grass (22.
4%) and bare ground (22%) and a reduction in residual grass (33%) and litter (31%) cover in grazed pastures in August.
During the nesting season in the post‐grazing year, we saw positive effects of grazing on vegetation for all cover types except bare ground, with new grass increasing 3.
6%.
However, the beneficial vegetation changes dissipated by August of the post‐grazing year.
Mean nest survival was 0.
565 (SE = 0.
114), 0.
315 (SE = 0.
066), and 0.
797 (SE = 0.
129) in pre‐grazing, grazing, and post‐grazing years, respectively, with lowest survival during the grazing year when there was also extensive flooding.
The nest survival model including year outperformed a model with an interaction between grazing timing and year, suggesting that interannual variability in weather conditions was more influential than grazing activity.
However, the magnitude of the reduction in nest survival in the grazing year was 67.
1% in the early‐grazed pasture, compared to 27.
5% and 37.
3% in control and late pastures, respectively.
Additional studies during years with less interannual variation are recommended to resolve possible treatment effects that might have been difficult to detect in the midst of such large interannual variability.

Related Results

Reproductive Stages Limiting Productivity of the Endangered Attwater’s Prairie Chicken
Reproductive Stages Limiting Productivity of the Endangered Attwater’s Prairie Chicken
An important concern of conservation biologists is determining what conditions most limit the number of individuals in endangered populations. Because time is a constraint, narrowi...
Effects of Black-Tailed Prairie Dog on Shortgrass Vegetation of Western Kansas
Effects of Black-Tailed Prairie Dog on Shortgrass Vegetation of Western Kansas
Previous studies indicate the black-tailed prairie dog (Cynomys ludovicianus) alters its environment through grazing, clipping, and burrowing, which affect plant community composit...
Potential for Transition to a Polygynous-Supercolonial Demography in Lasius Niger (Hymenoptera, Formicidae)
Potential for Transition to a Polygynous-Supercolonial Demography in Lasius Niger (Hymenoptera, Formicidae)
The formicine ant, Lasius niger (Linnaeus, 1758), is one of the most abundant and intensively studied Palaearctic ant species, and was previously thought to form exclusively monogy...
Prairie Grouse
Prairie Grouse
Abstract Prairie grouse, which include greater prairie-chicken (Tympanuchus cupido), lesser prairie-chicken (T. pallidicinctus), and sharp-tailed grouse (T. phasianellus)...
Route Learning and Transport of Resources during Colony Relocation in Australian Desert Ants
Route Learning and Transport of Resources during Colony Relocation in Australian Desert Ants
Abstract Many ant species are able to respond to dramatic changes in local conditions by relocating the entire colony to a new location. While we...
Simulating Strategic Implementation of the CRP to Increase Greater Prairie‐Chicken Abundance
Simulating Strategic Implementation of the CRP to Increase Greater Prairie‐Chicken Abundance
ABSTRACTThe Conservation Reserve Program (CRP) has the potential to influence the distribution and abundance of grasslands in many agricultural landscapes, and thereby provide habi...
Ecological Disturbance Through Patch‐Burn Grazing Influences Lesser Prairie‐Chicken Space Use
Ecological Disturbance Through Patch‐Burn Grazing Influences Lesser Prairie‐Chicken Space Use
ABSTRACTAcross portions of the western Great Plains in North America, natural fire has been removed from grassland ecosystems, decreasing vegetation heterogeneity and allowing wood...
Evapotranspiration from Northern Semiarid Grasslands
Evapotranspiration from Northern Semiarid Grasslands
Management of forage production for livestock grazing on semiarid grasslands depends on water availability. Evapotranspiration (ET) was measured using the Bowen ratio energy balanc...

Back to Top