4.3 Article

Mycorrhizae Alter Constitutive and Herbivore-Induced Volatile Emissions by Milkweeds

期刊

JOURNAL OF CHEMICAL ECOLOGY
卷 45, 期 7, 页码 610-625

出版社

SPRINGER
DOI: 10.1007/s10886-019-01080-6

关键词

Arbuscular mycorrhizal fungi (AMF); Volatile organic compounds (VOCs); Microbe-plant-insect interactions; Indirect defense; Asclepias; Aphis nerii

资金

  1. University of Michigan
  2. National Science Foundation Graduate Research Fellowship
  3. National Science Foundation Division of Environmental Biology [1256115]

向作者/读者索取更多资源

Plants use volatile organic compounds (VOCs) to cue natural enemies to their herbivore prey on plants. Simultaneously, herbivores utilize volatile cues to identify appropriate hosts. Despite extensive efforts to understand sources of variation in plant communication by VOCs, we lack an understanding of how ubiquitous belowground mutualists, such as arbuscular mycorrhizal fungi (AMF), influence plant VOC emissions. In a full factorial experiment, we subjected plants of two milkweed (Asclepias) species under three levels of AMF availability to damage by aphids (Aphis nerii). We then measured plant headspace volatiles and chemical defenses (cardenolides) and compared these to VOCs emitted and cardenolides produced by plants without herbivores. We found that AMF have plant species-specific effects on constitutive and aphid-induced VOC emissions. High AMF availability increased emissions of total VOCs, two green leaf volatiles (3-hexenyl acetate and hexyl acetate), and methyl salicylate in A. curassavica, but did not affect emissions in A. incarnata. In contrast, aphids consistently increased emissions of 6-methyl-5-hepten-2-one and benzeneacetaldehyde in both species, independent of AMF availability. Both high AMF availability and aphids alone suppressed emissions of individual terpenes. However, aphid damage on plants under high AMF availability increased, or did not affect, emissions of those terpenes. Lastly, aphid feeding suppressed cardenolide concentrations only in A. curassavica, and AMF did not affect cardenolides in either plant species. Our findings suggest that by altering milkweed VOC profiles, AMF may affect both herbivore performance and natural enemy attraction.

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