Literature DB >> 33651224

Primary and Secondary Metabolite Profiles of Lodgepole Pine Trees Change with Elevation, but Not with Latitude.

Melanie Mullin1, J G Klutsch1, J A Cale1, A Hussain1, S Zhao1, C Whitehouse2, Nadir Erbilgin3.   

Abstract

Climate change has a large influence on plant functional and phenotypic traits including plant primary and secondary metabolites. One well-established approach to investigating the variation in plant metabolites involves studying plant populations along elevation and latitude gradients. We considered how two space-for-time climate change gradients (elevation and latitude) influence carbohydrate reserves (soluble sugars, starches) and secondary metabolites (monoterpenes, diterpene resin acids) of lodgepole pine trees in western Canada. We were particularly interested in the relationship of terpenes and carbohydrates with a wide range of tree, site, and climatic factors. We found that only elevation had a strong influence on the expression of both terpenes and carbohydrates of trees. Specifically, as elevation increased, concentrations of monoterpenes and diterpenes generally increased and soluble sugars (glucose, sucrose, total sugars) decreased. In contrast, latitude had no impact on either of terpenes or carbohydrates. Furthermore, we found a positive relationship between concentrations of starch and total terpenes and diterpenes in the elevation study; whereas neither starches nor sugars were correlated to terpenes in the latitude study. Similarly, both terpenes and carbohydrates had a much greater number of significant correlations to site characteristics such as slope, basal area index, and sand basal area, in the elevational than in the latitude study. Overall, these results support the conclusion that both biotic and abiotic factors likely drive the patterns of primary and secondary metabolite profiles of lodgepole pine along geographical gradients. Also, presence of a positive relationship between terpenes and starches suggests an interaction between primary ad secondary metabolites of lodgepole pine trees.

Entities:  

Keywords:  Bark beetles; Climate change; Dendroctonus ponderosae; Diterpenes; Geographical variation; Monoterpenes; Non-structural carbohydrates; Pinus contorta; Secondary metabolites

Year:  2021        PMID: 33651224     DOI: 10.1007/s10886-021-01249-y

Source DB:  PubMed          Journal:  J Chem Ecol        ISSN: 0098-0331            Impact factor:   2.626


  33 in total

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9.  Toxicity of Pine Monoterpenes to Mountain Pine Beetle.

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10.  Characterizing the physical and genetic structure of the lodgepole pine × jack pine hybrid zone: mosaic structure and differential introgression.

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  1 in total

1.  Constitutive and Induced Defenses in Long-lived Pines Do Not Trade Off but Are Influenced by Climate.

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Journal:  J Chem Ecol       Date:  2022-08-18       Impact factor: 2.793

  1 in total

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