Foliar herbivory increases sucrose concentration in bracteal extrafloral nectar of cotton

Gale, Cody C. and Lesne, Pierre and Wilson, Caroline and Helms, Anjel M. and Suh, Charles P-C. and Sword, Gregory A. and Del-Claro, Kleber (2021) Foliar herbivory increases sucrose concentration in bracteal extrafloral nectar of cotton. PLOS ONE, 16 (10). e0258836. ISSN 1932-6203

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Abstract

Cultivated cotton, such as Gossypium hirsutum L., produces extrafloral (EF) nectar on leaves (foliar) and reproductive structures (bracteal) as an indirect anti-herbivore defense. In exchange for this carbohydrate-rich substance, predatory insects such as ants protect the plant against herbivorous insects. Some EF nectar-bearing plants respond to herbivory by increasing EF nectar production. For instance, herbivore-free G. hirsutum produces more bracteal than foliar EF nectar, but increases its foliar EF nectar production in response to herbivory. This study is the first to test for systemically induced changes to the carbohydrate composition of bracteal EF nectar in response to foliar herbivory on G. hirsutum. We found that foliar herbivory significantly increased the sucrose content of bracteal EF nectar while glucose and fructose remained unchanged. Sucrose content is known to influence ant foraging behavior and previous studies of an herbivore-induced increase to EF nectar caloric content found that it led to increased ant activity on the plant. As a follow-up to our finding, ant recruitment to mock EF nectar solutions that varied in sucrose content was tested in the field. The ants did not exhibit any preference for either solution, potentially because sucrose is a minor carbohydrate component in G. hirsutum EF nectar: total sugar content was not significantly affected by the increase in sucrose. Nonetheless, our findings raise new questions about cotton’s inducible EF nectar responses to herbivory. Further research is needed to determine whether an herbivore-induced increase in sucrose content is typical of Gossypium spp., and whether it constitutes a corollary of systemic sucrose induction, or a potentially adaptive mechanism which enhances ant attraction to the plant

Item Type: Article
Subjects: Journal Eprints > Geological Science
Depositing User: Managing Editor
Date Deposited: 05 Dec 2022 08:59
Last Modified: 01 Jul 2024 06:21
URI: http://repository.journal4submission.com/id/eprint/564

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