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Growth, Chemistry, and Genetic Profiles of Whitebark Pine Forests Affected by Climate-Driven Mountain Pine Beetle Outbreaks

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Six, Diana L. and Trowbridge, Amy and Howe, Michael and Perkins, Dana and Berglund, Erika and Brown, Peter and Hicke, Jeffrey A. and Balasubramanian, Ganesh. (2021). Growth, Chemistry, and Genetic Profiles of Whitebark Pine Forests Affected by Climate-Driven Mountain Pine Beetle Outbreaks. Frontiers in Forests and Global Change 4, 58. doi: 10.3389/ffgc.2021.671510

Summary

Climate change-driven Dendroctonus ponderosae outbreaks in semi-naïve Pinus albicaulis may result in rapid natural selection for trees with genotypes and phenotypes associated with survival. In this study, we investigated whether survivors were genetically and chemically different from a living cohort of trees that escaped predation due to smaller size and estimated genetic diversity. We also examined how growth rate and climate sensitivity varied between beetle-killed and surviving trees. Dendroctonus ponderosae predominantly kills large diameter trees; therefore, we predicted that large surviving trees would have distinctive genetic profiles and, due to bottlenecking and drift, survivors would have lower genetic diversity than the [...]

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  • National and Regional Climate Adaptation Science Centers
  • Northwest CASC

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citationTypeJournal Article
journalFrontiers in Forests and Global Change

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