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. 1988 Apr;75(3):367-370.
doi: 10.1007/BF00376939.

Short-term damage-induced increases in tobacco alkaloids protect plants

Affiliations

Short-term damage-induced increases in tobacco alkaloids protect plants

Ian T Baldwin. Oecologia. 1988 Apr.

Abstract

Leaf damage significantly increases the alkaloid content in undamaged leaves on damaged field-grown wild tobacco plants. Although field-grown pot-bound plants fail to exhibit the same damage-induced increase in alkaloid content, the ability to respond to leaf damage is restored 6 days after removing plants from their pots. Freshly hatched Manduca sexta larvae reared individually in the laboratory on the high-alkaloid foliage of damaged plants released from their pots gain less weight and eat less (57.2% and 45.7% of controls, respectively) than larvae fed low-alkaloid foliage from undamaged released plants. Moreover, larvae grow equally well on the foliage of damaged and undamaged pot-bound plants. The higher chlorophyll contents characteristic of damaged released plants did not negate the effects of the increased alkaloid contents on larval growth. Undamaged leaves from undamaged field-grown plants stem-fed nicotine solutions had elevated leaf nicotine and nornicotine contents. Larvae reared on these artificially induced leaves gain only 38.5% of the weight gained by larvae reared on low-alkaloid foliage. These results demonstrate that damage-induced increases in leaf alkaloids protect induced foliage from attack and are sufficient to explain the decreased growth of caterpillars on the foliage of damaged plants.

Keywords: Induced defense; Nicotiana sylvestris; Nicotine; Nornicotine; Plant-herbivore.

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References

    1. Plant Physiol. 1976 Feb;57(2):214-7 - PubMed
    1. Oecologia. 1984 Aug;63(2):166-170 - PubMed
    1. Proc Natl Acad Sci U S A. 1983 Feb;80(3):790-1 - PubMed
    1. Oecologia. 1985 Sep;67(2):235-237 - PubMed
    1. Oecologia. 1983 Mar;57(3):298-302 - PubMed