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Ashleigh M. Rhea

Publications and source records attributed to Ashleigh M. Rhea.

2 recordsLinked to original sources

Experimental reduction of a primary nest predator fails to decrease nest predation rates of sagebrush songbirds

Brewer’s Sparrow ( Spizella breweri ), Sagebrush Sparrow ( Artemisiospiza nevadensis ), and Sage Thrasher ( Oreoscoptus montanus )—during May to August 2019 in western Wyoming, USA, to assess whether nest predation risk was additive or compensatory, and whether nest predator removal could comprise a potentially effective management tool. Deer mouse removal did not affect the daily nest survival of songbirds between experimental and control plots, despite a reduction of 68%–85% in deer mouse abundance within treatment areas. Therefore, nest predation in this system likely operated in a compensatory way, in which deer mice that escaped removal, new immigrants, or other species of nest predator maintained similar levels of nest predation risk regardless of the prevalence of a primary predator. We caution that predator removal may not be an effective management tool in systems that lack barriers to predator immigration or have several alternative species of predators, even when a single species typically is responsible for the majority of predation events.

Wyoming

Intrabrood variation in nestling mass among three sagebrush-associated songbirds

The young of some altricial bird species hatch asynchronously, which can lead to considerable size differences among siblings. Nestling traits such as body mass, moreover, can carry over and influence post-fledging survival. Despite the potential importance of nestling mass for reproductive outcomes, however, variation in nestling mass and relationships with brood size has been described and quantified rarely. We weighed 453 nestlings from 148 nests of 3 sympatric, sagebrush-associated songbird species in Wyoming, USA, to describe the range of intrabrood mass differences. Intrabrood differences in nestling mass were greatest for the largest species, the Sage Thrasher ( Oreoscoptes montanus ), for which the smallest nestling in a brood was on average 26.2% smaller than the largest. The smaller Vesper Sparrow ( Pooecetes gramineus ) and Brewer's Sparrow ( Spizella breweri ) exhibited similar intrabrood mass ratios, with the smallest nestling being 17.4% and 18.4% smaller on average than the largest for the 2 species, respectively. For each additional nestling within a brood, the smallest nestling was an additional 6.6–13.6% smaller than the largest nestling, depending on species. Understanding the extent of intrabrood variation in nestling traits has important implications for the productivity of species facing unpredictable environments.

The Wilson Journal of Ornithology