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Biology subjects

Snyder, K. T.

Publications and source records attributed to Snyder, K. T..

2 recordsLinked to original sources

Cooperative breeding in songbirds promotes female song but slows the evolution of song elaboration

Birdsong has historically been characterized as a sexually selected, primarily male behavior. More recent findings suggest female song is widespread, raising questions about how social functions of birdsong shape song evolution. Certain breeding systems, like cooperative breeding, change social dynamics and selection pressures on both sexes, providing important contexts for studying song evolution. Here, we use phylogenetic comparative analyses across 1041 songbird species to examine relationships between cooperative breeding, female song, and male song characteristics. Here, we show robust bidirectional co-evolutionary dynamics between cooperative breeding and female song that persist when controlling for territoriality, allometry, and geographic sampling biases. Importantly, when examining intensity of territorial defense, we find this relationship is context-dependent: while cooperative breeding and female song commonly co-occur in strongly territorial systems, their association is especially pronounced in weakly territorial systems, where they co-occur much more often than expected by chance. Additionally, we observe that male song repertoire size evolves more slowly in cooperative-breeding lineages. These findings demonstrate that cooperative breeding shapes the evolution of vocal communication differently based on territorial context and sex, with female song potentially serving crucial but understudied functions related to social cohesion in cooperative systems, particularly in species where territorial conflict is reduced.

animal behavior and cognition↗

Cultural signatures of punctuated environmental change: measuring the effects of population-wide stress on song distribution in dark-eyed juncos and song sparrows

Severe weather events can dramatically alter a species evolutionary trajectory. Previous landmark studies on populations in transiently hostile environments have measured traits that are under direct selection during those events. However, phenotype shifts that are not inherently adaptive to the fluctuating environment may also occur. Stress, especially during development, can cause important phenotypic changes in individuals, including impaired learning. Thus, learned behaviors, such as birdsong, may exhibit unique evolutionary dynamics as a result of widespread environmental stress. We hypothesize that ecosystem-level stressors may cause population-level changes to birdsong as entire cohorts experience developmental stress, learn songs imperfectly, and become the song tutors for future generations. In 2016, an unprecedented drought affected western New York State, a hotspot for community-science-generated birdsong recordings, and presented a unique opportunity to test our hypothesis through a natural experiment. We analyzed publicly available community-science birdsong recordings of two species, Junco hyemalis and Melospiza melodia, recorded between 2006-2020 in the drought-affected region and two control regions. We found that population-level song features had changed in the species with more complex songs (song sparrow) in the drought area after 2016, but not in the control area or in the species with a simple song (dark-eyed junco), implying that stress-induced deficits may disproportionately affect song traits that are more difficult to learn. These results demonstrate that environmental events can drive population-level trait evolution due to disruption in learning, with potentially important implications for speciation.

evolutionary biology↗