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A Floral-Derived Compound Attractive to the Tephritid Fruit Fly Parasitoid
A Floral-Derived Compound Attractive to the Tephritid
Fruit Fly Parasitoid Diachasmimorpha longicaudata
(Hymenoptera: Braconidae)
Eric Rohrig John Sivinski Peter Teal
Charles Stuhl Martin Aluja
Received: 30 October 2007 /Revised: 20 December 2007 /Accepted: 23 January 2008
# Springer Science + Business Media, LLC 2008
Abstract Many adult hymenopteran parasitoids, even host-
feeding species, consume the nectar of flowering plants.
Previous field studies had identified plants attractive
(Lobularia maritima L.) and unattractive (Spermacoce
verticillata L) to certain opiine braconids (Hymenoptera).
Under laboratory conditions, Diachasmimorpha longicau-
data (Ashmead), a parasitoid of tephritid fruit fly larvae and
representative opiine, responded in flight tunnels to L.
maritima but not to S. verticillata. Volatile chemicals of the
two flowers were collected and analyzed by using capillary
gas liquid chromatography and mass spectral analysis.
Acetophenone was isolated from L. maritima but not from
S. verticillata. In flight tunnels, D. longicaudata were
exposed to 10 concentrations (doses) of acetophenone.
Female parasitoids showed a significant attraction to
several acetophenone doses, with concentrations of 25 and
50 ng the most attractive. No odor source, either floral or
floral-derived, was attractive to male parasitoids. Reliable
trapping systems for parasitoid species, particularly species
such as D. longicaudata used for augmentative biological
control, would be a valuable monitoring tool. At present,
there are few, if any, florally derived synthetic lures for
attracting hymenopteran parasitoids.
Keywords Acetophenone . Opiinae . Traps .
Biological control . Flowers
Introduction
Understanding the population dynamics of target pests and
their natural enemies is critically important in Integrated
Pest Management (IPM) (Kogan 1998; Suckling et al.
2002). Attraction and trapping techniques are among the
simplest means of determining pest and natural enemy
distrib
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