Species Dependent Influence of (−)-α-Pinene on Attraction of Ambrosia Beetles (Coleoptera: Curculionidae: Scolytinae) to Ethanol-Baited Traps in Nursery Agroecosystems

2011 ◽  
Vol 104 (2) ◽  
pp. 574-579 ◽  
Author(s):  
Christopher M. Ranger ◽  
Michael E. Reding ◽  
Kamal J. K. Gandhi ◽  
Jason B. Oliver ◽  
Peter B. Schultz ◽  
...  
Author(s):  
Antonio Gugliuzzo ◽  
Peter H. W. Biedermann ◽  
Daniel Carrillo ◽  
Louela A. Castrillo ◽  
James P. Egonyu ◽  
...  

AbstractWe provide an overview of both traditional and innovative control tools for management of three Xylosandrus ambrosia beetles (Coleoptera: Curculionidae: Scolytinae), invasive species with a history of damage in forests, nurseries, orchards and urban areas. Xylosandrus compactus, X. crassiusculus and X. germanus are native to Asia, and currently established in several countries around the globe. Adult females bore galleries into the plant xylem inoculating mutualistic ambrosia fungi that serve as food source for the developing progeny. Tunneling activity results in chewed wood extrusion from entry holes, sap outflow, foliage wilting followed by canopy dieback, and branch and trunk necrosis. Maintaining plant health by reducing physiological stress is the first recommendation for long-term control. Baited traps, ethanol-treated bolts, trap logs and trap trees of selected species can be used to monitor Xylosandrus species. Conventional pest control methods are mostly ineffective against Xylosandrus beetles because of the pests’ broad host range and rapid spread. Due to challenges with conventional control, more innovative control approaches are being tested, such as the optimization of the push–pull strategy based on specific attractant and repellent combinations, or the use of insecticide-treated netting. Biological control based on the release of entomopathogenic and mycoparasitic fungi, as well as the use of antagonistic bacteria, has yielded promising results. However, these technologies still require validation in real field conditions. Overall, we suggest that management efforts should primarily focus on reducing plant stress and potentially be combined with a multi-faceted approach for controlling Xylosandrus damage.


1985 ◽  
Vol 117 (1) ◽  
pp. 49-55 ◽  
Author(s):  
T. L. Shore ◽  
J. A. McLean

AbstractThe pheromones lineatum and (+)-sulcatol were used in traps in a sawmill to survey the ambrosia beetles Trypodendron lineatum (Olivier) and Gnathotrichus retusus (LeConte) respectively. Spatial and temporal distribution patterns for both species were identified. This information can be used for the establishment of a pheromone-based mass-trapping program for ambrosia beetles. The addition of ethanol and α-pinene to traps baited with (+)-sulcatol significantly increased the catches of G. retusus.


1983 ◽  
Vol 115 (3) ◽  
pp. 303-313 ◽  
Author(s):  
B. S. Lindgren ◽  
J. H. Borden ◽  
L. Chong ◽  
L. M. Friskie ◽  
D. B. Orr

AbstractThe optimal release rate of the aggregation pheromone, lineatin, for trapping Trypodendron lineatum (Olivier) was 40 μg/24h. Sticky vane traps were more efficient than three other trap types for T. lineatum and Gnathotrichus retusus (LeConte). For G. sulcatus (LeConte), a multiple funnel trap was more efficient than a sticky cylinder trap but no better than vane traps or Scandinavian drainpipe traps. Placement of bait in the middle or bottom of drainpipe traps increased their efficiency in capturing T. lineatum and G. sulcatus. Multiple funnel traps and drainpipe traps releasing lineatin at 10 μg/24h, with an additional dispenser releasing lineatin at 30 μg/24h 1.5–2 m away from the trap caught more T. lineatum than traps releasing lineatin at 10 μg/24h, and were as efficient as traps releasing the pheromone at 40 μg/24h. Thus, the beetles respond strongly to the trap silhouette once attracted to its vicinity. In late April traps placed 15–25 m inside the forest margin caught more T. lineatum than traps at the margin, probably intercepting overwintering beetles before they left the forest. A few strategically placed vane traps among numerous multiple funnel or drainpipe traps are recommended for mass trapping of ambrosia beetles in timber processing areas.


2011 ◽  
Vol 104 (6) ◽  
pp. 2017-2024 ◽  
Author(s):  
Michael E. Reding ◽  
Peter B. Schultz ◽  
Christopher M. Ranger ◽  
Jason B. Oliver

2013 ◽  
Vol 42 (3) ◽  
pp. 539-547 ◽  
Author(s):  
Christopher M. Ranger ◽  
Patrick C. Tobin ◽  
Michael E. Reding ◽  
Alicia M. Bray ◽  
Jason B. Oliver ◽  
...  

2015 ◽  
Vol 108 (1) ◽  
pp. 183-191 ◽  
Author(s):  
D. R. Miller ◽  
K. J. Dodds ◽  
E. R. Hoebeke ◽  
T. M. Poland ◽  
E. A. Willhite

Author(s):  
Michael E Reding ◽  
Christopher M Ranger

Abstract Ethanol-treated bolts (tree stem sections) have potential as monitoring and pesticide screening tools for ambrosia beetles (Coleoptera: Curculionidae: Scolytinae). Bolts were infused with ethanol by immersing them for at least 24 h. Attacks on ethanol-treated bolts by Xylosandrus species were compared with captures in ethanol-baited traps. Bolts infused in ethanol were usually as attractive or more attractive to Xylosandrus germanus (Blandford) than ethanol-baited bottle traps. Xylosandrus crassiusculus (Motschulsky) were more attracted to bolts than trap in some experiments, but numbers were low and differences were usually not significant. Two techniques for treating bolts with ethanol were compared. Attraction of ambrosia beetles to ethanol-infused bolts were compared with bolts with a drilled cavity filled with ethanol. Drilled bolts filled with ethanol were attractive to X. germanus and were reliably attacked, but numbers of beetles were often lower than in traps and infused bolts. Aged and fresh ethanol-infused bolts were compared with evaluate residual attractiveness. Bolts aged 7 d usually had fewer X. germanus than fresh bolts and traps, and bolts aged 14 d had no beetles. Ethanol-infused bolts from different species of trees were compared. Xylosandrus germanus attacked all species tested with more attacks usually in red maple (Acer rubrum L.). Anisandrus maiche Stark was attracted to ethanol-infused bolts indicating it may attack trees emitting ethanol. Bolts attracted fewer nontarget species than traps, but residual attraction was much less. The selectivity of ethanol-treated bolts for Xylosandrus species should make them useful for monitoring and screening pesticides against those species.


1983 ◽  
Vol 13 (3) ◽  
pp. 481-493 ◽  
Author(s):  
B. S. Lindgren ◽  
J. H. Borden

The spatial distribution and population estimates of overwintering Trypodendronlineatum (Olivier) were determined by sampling beetles in the duff at four dryland log sorts. The temporal and spatial distributions of flying T. lineatum, Gnathotrichussulcatus (LeConte), and G. retusus (LeConte) over 3 years were determined by catches by pheromone-baited traps in three dryland sorts. At one dryland sort the distribution data from survey trapping and overwintering sampling were used to establish optimal trap placement for the subsequent year's trapping. At this dryland sort the trapping effort was expanded from a survey into a mass trapping program, using a barrier strategy. The total catches of all three species in 1979, 1980, and 1981 were 120 000, 690 000, and 2 800 000, respectively. Approximately 66 and 79% of the captured beetles in 1980 and 1981, respectively, were T. lineatum. When compared with high and low population estimates of overwintering T. lineatum the catches of this species represented 1–3, 12–21, and 44–77% of the total overwintering population for the respective years. For each year, the following winter's population remained constant relative to previous years. A mass trapping program, utilizing synthetic pheromones, multiple funnel traps, and sticky vane traps, was recommended in conjunction with improved log inventory management.


2010 ◽  
Vol 28 (2) ◽  
pp. 85-90 ◽  
Author(s):  
Michael Reding ◽  
Jason Oliver ◽  
Peter Schultz ◽  
Chris Ranger

Abstract Ethanol-baited bottle traps were used to monitor spring flight activity of the ambrosia beetles Xylosandrus crassiusculus and Xylosandrus germanus in Ohio, Tennessee, and Virginia. The traps were deployed at three different heights to determine if height influenced captures. X. germanus was captured in all three states, while X. crassiusculus was captured in TN and VA only. Traps 0.5 m above the ground captured more X. germanus than traps at 1.7 or 3.0 m. Traps 0.5 or 1.7 m above the ground captured more X. crassiusculus than traps at 3.0 m. In TN and VA, first activity of X. crassiusculus and X. germanus occurred from mid-March to early April. In OH, first activity of X. germanus occurred early to mid-April. Analysis of attacks by X. germanus on Cornus florida revealed that more than 90% of the attacks occurred on the main trunk within 1 m (3 ft) of the ground. Monitoring will be most effective when traps are suspended 0.5 or < 1.7 m above the ground for X. germanus or X. crassiusculus, respectively. To detect first flight of X. crassiusculus or X. germanus, traps should be deployed by early to mid-March in TN and VA and late March in OH.


Biologia ◽  
2014 ◽  
Vol 69 (10) ◽  
Author(s):  
Juraj Galko ◽  
Christo Nikolov ◽  
Troy Kimoto ◽  
Andrej Kunca ◽  
Andrej Gubka ◽  
...  

AbstractThe attractiveness of ultra high release ethanol lures to ambrosia beetles in Slovakian oak forests was tested from 2010 to 2012. A total of 24,705 specimens were captured during this three year period with Xyleborinus saxesenii (Ratzeburg, 1837) representing 49.28% (12,174 specimens) of the total. Other dominant species captured in the traps were Anisandrus dispar (F., 1792) (27.84%), Xyleborus monographus (F., 1792) (9.72%) and Trypodendron signatum (F., 1792) (6.04%). During this experiment, Xylosandrus germanus (Blandford, 1894) was detected for the first time in Slovakia with an increase in capture each year (19, 40 and 77 specimens, respectively). Flight period for ambrosia beetles in Slovakia occurs from the beginning of April through the end of September. This is the first time that ethanol baited traps were deployed in Slovakian oak forests and the lures were an effective tool for monitoring native and non-native ambrosia beetles.


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