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Title: Influence of Elevation on Bark Beetle (Coleoptera: Curculionidae, Scolytinae) Community Structure and Flight Periodicity in Ponderosa Pine Forests of Arizona.
Authors: Williams, K.K.
McMillin, J.D.
DeGomez, T.E.
Clancy, K.M.
Miller, A.
USDA, FS
Source: Environmental entomology. 2008 Feb., v. 37, issue 1, p. 94-109.
NALT Subjects: Ips
Dendroctonus
bark beetles
community structure
species diversity
population density
insect flight
periodicity
seasonal variation
altitude
temperature
Pinus ponderosa
coniferous forests
Arizona
Other Subjects: flight behavior
flight seasonality
Issue Date: Feb-2008
Abstract: We examined abundance and flight periodicity of five Ips and six Dendroctonus species (Coleoptera: Curculionidae, Scolytinae) among three different elevation bands in ponderosa pine (Pinus ponderosa Douglas ex. Lawson) forests of northcentral Arizona. Bark beetle populations were monitored at 10 sites in each of three elevation bands (low: 1,600-1,736 m; middle: 2,058-2,230 m; high: 2,505-2,651 m) for 3 yr (2004-2006) using pheromone-baited Lindgren funnel traps. Trap contents were collected weekly from March to December. We also studied temperature differences among the elevation bands and what role this may play in beetle flight behavior. Bark beetles, regardless of species, showed no consistent elevational trend in abundance among the three bands. The higher abundances of Ips lecontei Swaine, I. calligraphus ponderosae Swaine, Dendroctonus frontalis Zimmerman, and D. brevicomis LeConte at low and middle elevations offset the greater abundance of I. knausi Swaine, D. adjunctus Blandford, D. approximatus Dietz, and D. valens LeConte at high elevations. I. pini (Say) and I. latidens LeConte were found in similar numbers across the three bands. Flight periodicity of several species varied among elevation bands. In general, the flight period shortened as elevation increased; flight initiated later and terminated earlier in the year. The timing, number, and magnitude of peaks in flight activity also varied among the elevation bands. These results suggest that abundance and flight seasonality of several bark beetles are related to elevation and the associated temperature differences. The implications of these results are discussed in relation to bark beetle management and population dynamics.
URI: http://hdl.handle.net/10113/15259
Appears in Collections:USDA Research and Information

Files in This Item:

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IND44038196.pdf1127KbAdobe PDFView/Open

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