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      Phenolic predictors for Norway spruce resistance to the bark beetle Ips typographus (Coleoptera: Scolytidae) and an associated fungus, Ceratocystis polonica

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      Canadian Journal of Forest Research
      Canadian Science Publishing

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          Abstract

          Changes in phloem phenolic content of Norway spruce (Picea abies (L.) Karst.) clones were followed during the first 12 days of the reaction induced by phloem artificial inoculation with Ceratocystis polonica Siem., a bark beetle (Ips typographus L.) associated fungus. The aim was to confirm our previous results concerning the mechanisms of this reaction and the possible predictors of Norway spruce resistance to bark beetles and their associated fungi. The induced reaction was characterized by a slight decrease of tanning ability and an increase of (+)-catechin concentration, which confirmed our previous observations. The relative resistance of the clones was first predicted using the predictors previously proposed. In addition, the first axis of the principal component analysis describing the phenolic content of all clones was used as a synthetic predictor (resistance axis). Related variables were also tested as predictors. Actual resistance of each clone was then measured, using mass inoculations of C. polonica, and was compared with the predictions. Four predictors were so validated: the resistance axis, tanning ability and isorhapontin concentration in uninoculated phloem, and (+)-catechin concentration in the phloem 6 days after its inoculation. Phloem phenolic composition could thus be used to predict Norway spruce resistance to bark beetles and their associated fungi.

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          Resistance of conifers to bark beetle attack: Searching for general relationships

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            PHYSIOLOGICAL ASPECTS OF LODGEPOLE PINE WOUND RESPONSES TO A FUNGAL SYMBIONT OF THE MOUNTAIN PINE BEETLE, DENDROCTONUS PONDEROSAE (COLEOPTERA: SCOLYTIDAE)

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              Ceratocysts polonica inoculated in Norway spruce: Blue-staining in relation to inoculum density, resinosis and tree growth

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                Author and article information

                Journal
                Canadian Journal of Forest Research
                Can. J. For. Res.
                Canadian Science Publishing
                0045-5067
                1208-6037
                May 01 1998
                May 01 1998
                : 28
                : 5
                : 720-728
                Article
                10.1139/x98-037
                553960ba-0fe3-47ff-8b4a-3762113acf87
                © 1998

                http://www.nrcresearchpress.com/page/about/CorporateTextAndDataMining

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