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  • 1
    ISSN: 1573-1561
    Keywords: Trichome ; geraniums ; Pelargonium ; defensive agents ; anacardic acids ; double-bond location ; insect resistance
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Chemistry and Pharmacology
    Notes: Abstract Ozonolysis, dithioether derivatization, and EI and CI mass spectrometry were used to establish the location of the double bond in the side chain of the two major anacardic acids in geranium (Pelargonium hortorum) trichome exudate. The point of unsaturation was shown to be between C-5 and C-6 counting from the methyl end of the side chain, contradicting the earlier hypothesis that the olefmic bond was probably at the 9–10 position based upon expected biosynthetic considerations. The two major components are thus 6-[(Z)-10′-pentadecenyl]salicylic acid (C22H34O3) and 6-[(Z)-12′-heptadecenyl] salicylic acid (C24H38O3). This may indicate that the precursor of these anacardic acids is a saturated fatty acid since the location of a double bond at the 5–6 position is unusual among the unsaturated fatty acids. Capillary GLC and HPLC of the trichome exudate indicated the presence of small amounts of other anacardic acid analogs possessing such features as odd numbers of carbon atoms and saturated side chains.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-1561
    Keywords: Glandular trichomes ; geraniums ; insect resistance ; secondary compounds ; Pelargonium xhortorum ; foxglove aphid ; Acyrthosiphon solani ; Homoptera ; Aphidae
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Chemistry and Pharmacology
    Notes: Abstract Geraniums (Pelargonium xhortorum Bailey) possess a pest-resistance mechanism, based on glandular trichomes and the exudate they produce, that has been shown to be effective against the two-spotted spider mite (Tetranychus urticae Koch). Using an intact plant bioassay, the effectiveness of the resistance mechanism was determined for another potential pest, the foxglove aphid (Acyrthosiphon solani Kaltenbach). Comparisons were made between plant lines previously analyzed for their degree of resistance to mites, as well as their glandular trichome density and trichome exudate production. Over 100 aphid adults were bioassayed on each of the five plant lines used in the experiment. In addition to adult aphid survival, the production and survival of nymphs was determined in this bioassay. The results indicate that plant lines that are resistant to the two-spotted spider mite are also resistant to the foxglove aphid, while lines susceptible to mites are susceptible to the aphids. To evaluate the physical impediment features of the trichome exudate, the behavior of foxglove aphid nymphs was compared on two geranium lines, one a resistant line with high trichome densities and large quantities of exudate and the second a susceptible line with few trichomes and reduced exudate. A third leaf surface type was produced by washing the exudate from resistant leaves using a mildly basic buffer solution prior to the bioassay. Aphid behavior was divided into five categories: feeding or probing, resting, wandering, struggling, and immobilized. On both susceptible leaves and resistant leaves from which the exudate had been removed by washing, the aphids settled quickly and were observed with inserted stylets during most of the observation intervals. In contrast, aphids on the unwashed resistant leaf surfaces often became ensnared in the sticky trichome exudate and had difficulty in settling to probe the leaf. Physical entrapment by glandular trichome exudate appears to be an important aspect of aphid resistance in geraniums.
    Type of Medium: Electronic Resource
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