DOI: 10.1111/1365-2664.70590 ISSN: 0021-8901

Solar energy development selectively filters avian taxonomic and functional diversity across a perennial agricultural landscape

Timothy J. Boycott, Trifosa I. Simamora, Amanda D. Rodewald, Steven M. Grodsky

Abstract

Solar energy is rapidly expanding across agricultural landscapes, yet its consequences for avian communities remain poorly understood, particularly among heterogeneous land‐use matrices.

In 2024 and 2025, we surveyed birds across 107 sites in New York State, including conventional solar arrays with mowing or sheep grazing to manage vegetation, solar‐adjacent working lands (e.g. hayfields, pastures) and reference working lands independently located from solar arrays. We integrated diversity metrics across four trait dimensions—taxonomic, morphological, ecological and conservation status—and examined interactions between species‐level abundance and traits to understand avian community responses to solar energy development.

Avian species in solar sites tended to be common, non‐migratory (in behaviour and wing morphology) and associated with shrubland or forest. Compared to reference working lands, bird communities in solar and solar‐adjacent sites were less taxonomically diverse and were composed of fewer declining and range‐restricted species. However, solar and solar‐adjacent sites retained comparable diversity of intrinsic traits, suggesting that ecological function may persist despite apparent species filtering and functional reshuffling.

While solar energy development can support avian communities with unique functional signatures, our findings suggest that conventional solar arrays sited on agricultural working lands in New York maintain low bird diversity and are unlikely to support conservation‐priority species—such as grassland birds characterized by declining populations, migratory tendencies and open‐habitat dependence.

Synthesis and applications . Our study provides a pathway to leverage functional diversity to quantitatively characterize solar‐associated avian communities and the ecological mechanisms that shape them. Our results suggest that meeting biodiversity conservation goals while achieving solar energy targets requires ecologically informed siting and processes, particularly across regions in which co‐prioritization of conservation, agriculture and energy presents sustainability trade‐offs.