Semivariogram models for estimating fig fly population density throughout the year

Authors

  • Mauricio Paulo Batistella Pasini Federal University of Santa Maria image/svg+xml
  • Alessandro Dal'Col Lúcio Federal University of Santa Maria image/svg+xml
  • Alberto Cargnelutti Filho Federal University of Santa Maria image/svg+xml

DOI:

https://doi.org/10.1590/S1678-3921.pab2014.v49.18832

Keywords:

Zaprionus indianus, geostatistics, integrated pest management, monitoring, regionalized variables, spatial dependence

Abstract

The objective of this work was to select semivariogram models to estimate the population density of fig fly (Zaprionus indianus; Diptera: Drosophilidae) throughout the year, using ordinary kriging. Nineteen monitoring sites were demarcated in an area of 8,200 m2, cropped with six fruit tree species: persimmon, citrus, fig, guava, apple, and peach. During a 24 month period, 106 weekly evaluations were done in these sites. The average number of adult fig flies captured weekly per trap, during each month, was subjected to the circular, spherical, pentaspherical, exponential, Gaussian, rational quadratic, hole effect, K‑Bessel, J‑Bessel, and stable semivariogram models, using ordinary kriging interpolation. The models with the best fit were selected by cross‑validation. Each data set (months) has a particular spatial dependence structure, which makes it necessary to define specific models of semivariograms in order to enhance the adjustment to the experimental semivariogram. Therefore, it was not possible to determine a standard semivariogram model; instead, six theoretical models were selected: circular, Gaussian, hole effect, K‑Bessel, J‑Bessel, and stable.

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Published

2014-08-15

Issue

Section

ENTOMOLOGY

How to Cite

Pasini, M. P. B., Dal'Col Lúcio, A., & Cargnelutti Filho, A. (2014). Semivariogram models for estimating fig fly population density throughout the year. Pesquisa Agropecuaria Brasileira, 49(7), 493-505. https://doi.org/10.1590/S1678-3921.pab2014.v49.18832