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Physical and chemical plant characters inhibiting the searching behaviour of shape Trichogramma chilonis
Authors:J. Romeis   T.G. Shanower  C.P.W. Zebitz
Affiliation:(1) International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Patancheru, 502 324 Andhra Pradesh, India;(2) Institute of Phytomedicine, University of Hohenheim, 70593 Stuttgart, Germany;(3) Present address: ETH Zentrum/nw, Institute of Plant Sciences, Applied Entomology, Clausiusstrasse 25, 8092 Zürich, Switzerl;(4) Agricultural Research Service, USDA-, 1500 N. Central Ave., Sidney, MT 59270, USA
Abstract:Several plant characters are known to affect the searching behaviour and parasitization efficiency of Trichogramma spp. (Hymenoptera: Trichogrammatidae). In this study, plant characters contributing to the low Helicoverpa armigera (Hübner) (Lepidoptera: Noctuidae) egg parasitism levels on pigeonpea (Cajanus cajan (L.) Millspaugh) were investigated. The efficiency of T. chilonis on pigeonpea was dependent on the plant structure on which the host eggs were found. In a cage experiment, more than 55% of eggs placed on leaves were parasitized, while 1% of eggs on calyxes and no eggs on pods were parasitized. In a filter paper bioassay, parasitoids were deterred by acetone and hexane surface extracts from pigeonpea pods but showed no response to water extract. The searching behaviour of the parasitoids was not affected by different solvent extracts from the surface of pigeonpea leaves. In a four-armed airflow olfactometer, T. chilonis was repelled by volatiles from pigeonpea pods but showed no response to volatiles derived from hexane extract of pod surfaces. Volatile infochemicals and hexane surface extracts from pods of two wild Cajanus species, C. scarabaeoides (L.) Thours and C. platycarpus (Bentham) van der Maesen, were similarly deterrent to T. chilonis. The movement of the parasitoids on pigeonpea pods and calyxes was inhibited by long trichomes and wasps were trapped by sticky trichome exudates. Parasitoids walked significantly faster on leaves than on pods. The walking speed on both pods and leaves increased significantly after washing with hexane. The results presented in this paper show that the plant growth stage and the plant structures preferred by H. armigera for oviposition are the least suitable for T. chilonis, contributing to the low parasitoid efficiency on pigeonpea.
Keywords:filter paper bioassay  Cajanus spp.  Helicoverpa armigera  infochemicals  olfactometer  pigeonpea  surface chemicals  Trichogramma chilonis  trichomes  trichome exudates  walking speed
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