Reproductive success of the threatened San Clemente Bell’s Sparrow (Artemisiospiza belli clementeae) in recovering habitats is similar to success in historical habitat

Abstract

The San Clemente Bell’s Sparrow (Artemisiospiza belli clementeae) is a federally threatened subspecies endemic to San Clemente Island, California. Previous research suggested dependence on boxthorn (Lycium californicum) as breeding habitat and nesting substrate; however, this conclusion was based on data collected when introduced feral ungulates had severely degraded the soil and vegetation cover. Since removal of the ungulates, native vegetation has gradually increased and the San Clemente Bell’s Sparrows have expanded into areas where habitat had been unsuitable. To explore how Bell’s Sparrows use these areas, we examined reproductive metrics associated with habitat covariates gathered at 214 nest sites used by Bell’s Sparrows from 2014 to 2016. We found that nest success in boxthorn habitat, previously considered an essential habitat for Bell’s Sparrow nesting, was similar to success in alternative habitat types. Our findings contradict previous conclusions that Bell’s Sparrows were boxthorn-dependent. We believe this previously documented relationship was likely due to the lack of available alternative nesting habitat following years of feral ungulate degradation, and Bell’s Sparrows now reproduce in multiple habitat types and throughout most of San Clemente Island. Furthermore, our findings illustrate the importance of long-term monitoring and corresponding adaptive management when monitoring species in changing and recovering landscapes.

Document Details

Document Type
Pub Defense Publication
Publication Date
Feb 19, 2020
Source ID
10.1093/condor/duz071

Entities

People

  • Andrew S. Bridges
  • Emma E Deleon
  • Susan T Meiman

Organizations

  • United States Army Corps of Engineers

Tags

Fields of Study

  • Environmental science

Readers

  • Aerospace Engineering
  • Aquatic Ecology
  • Coastal and Marine Engineering/Sediment Transport/Hydraulic Engineering