4.7 Article

Defence syndromes in lodgepole - whitebark pine ecosystems relate to degree of historical exposure to mountain pine beetles

Journal

PLANT CELL AND ENVIRONMENT
Volume 40, Issue 9, Pages 1791-1806

Publisher

WILEY
DOI: 10.1111/pce.12985

Keywords

Bark beetles; carbohydrates; climate change; conifers; defence; fungi; induction; ophiostomatoid; phenolics; terpenes

Categories

Funding

  1. Univ. Wisconsin Graduate School Natural Sciences and UW
  2. Natural Sciences and Engineering Research Council of Canada

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Warming climate is allowing tree-killing bark beetles to expand their ranges and access naive and semi-naive conifers. Conifers respond to attack using complex mixtures of chemical defences that can impede beetle success, but beetles exploit some compounds for host location and communication. Outcomes of changing relationships will depend on concentrations and compositions of multiple host compounds, which are largely unknown. We analysed constitutive and induced chemistries of Dendroctonus ponderosae's primary historical host, Pinus contorta, and Pinus albicaulis, a high-elevation species whose encounters with this beetle are transitioning from intermittent to continuous. We quantified multiple classes of terpenes, phenolics, carbohydrates and minerals. Pinus contorta had higher constitutive allocation to, and generally stronger inducibility of, compounds that resist these beetle-fungal complexes. Pinus albicaulis contained higher proportions of specific monoterpenes that enhance pheromone communication, and lower induction of pheromone inhibitors. Induced P. contorta increased insecticidal and fungicidal compounds simultaneously, whereas P. albicaulis responses against these agents were inverse. Induced terpene accumulation was accompanied by decreased non-structural carbohydrates, primarily sugars, in P. contorta, but not P. albicaulis, which contained primarily starches. These results show some host species with continuous exposure to bark beetles have more thoroughly integrated defence syndromes than less-continuously exposed host species.

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