4.7 Article

Integrating distance sampling and presence-only data to estimate species abundance

期刊

ECOLOGY
卷 102, 期 1, 页码 -

出版社

WILEY
DOI: 10.1002/ecy.3204

关键词

black‐ backed jackal; data integration; distance sampling; integrated modeling; integrated distribution model; integrated species distribution model; presence‐ only model

类别

资金

  1. National Science Foundation (NSF) [EF1702635, DBI-1954406]
  2. NSF [OISE-1853934, IOS-1755089]
  3. Lakeside Foundation
  4. Kenya Wildlife Trust

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Integrated models combining presence-only data and distance sampling data improve accuracy and precision of estimates for species abundance and covariate effects. A case study in the Masai Mara National Reserve in Kenya revealed that human disturbance was a major driver of black-backed jackal abundance patterns. The model showed minimal effects of landscape cover, lion density, and distance to water sources on jackal abundance.
Integrated models combine multiple data types within a unified analysis to estimate species abundance and covariate effects. By sharing biological parameters, integrated models improve the accuracy and precision of estimates compared to separate analyses of individual data sets. We developed an integrated point process model to combine presence-only and distance sampling data for estimation of spatially explicit abundance patterns. Simulations across a range of parameter values demonstrate that our model can recover estimates of biological covariates, but parameter accuracy and precision varied with the quantity of each data type. We applied our model to a case study of black-backed jackals in the Masai Mara National Reserve, Kenya, to examine effects of spatially varying covariates on jackal abundance patterns. The model revealed that jackals were positively affected by anthropogenic disturbance on the landscape, with highest abundance estimated along the Reserve border near human activity. We found minimal effects of landscape cover, lion density, and distance to water source, suggesting that human use of the Reserve may be the biggest driver of jackal abundance patterns. Our integrated model expands the scope of ecological inference by taking advantage of widely available presence-only data, while simultaneously leveraging richer, but typically limited, distance sampling data.

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