The greatest density of parenchyma inclusions in Karelian birch wood occurs at confluences of phloem flows

The specific pattern of the wood of Karelian birch ( Roth var. (Merckl.) Hämet-Ahti), is created mainly by dark-coloured inclusions of parenchyma tissue. Our study revealed that the greatest density of parenchyma inclusions in Karelian birch wood is observed above branch attachments to the trunk an...

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Bibliographic Details
Published in:Silva Fennica
Main Authors: Novitskaya, Ludmila, Nikolaeva, Nadezhda, Galibina, Natalia, Tarelkina, Tatiana, Semenova, Ludmila
Format: Article in Journal/Newspaper
Language:English
Published: Finnish Society of Forest Science 2016
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Online Access:https://doi.org/10.14214/sf.1461
https://doaj.org/article/191e4f8ffe0e41f69c6bd5c8c67a943d
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Summary:The specific pattern of the wood of Karelian birch ( Roth var. (Merckl.) Hämet-Ahti), is created mainly by dark-coloured inclusions of parenchyma tissue. Our study revealed that the greatest density of parenchyma inclusions in Karelian birch wood is observed above branch attachments to the trunk and below forks. In the place of branch attachment, phloem flows of photoassimilates (sucrose) from the branch and along the trunk merge into one pathway, causing a rise in sucrose content in tissues there. In the area below the fork, sucrose flows from two (or more) trunk axes are combined. Many studies have demonstrated that elevated sucrose level is associated with the differentiation of parenchyma. We believe that where large phloem fluxes merge a high level of sucrose promotes mass differentiation of parenchyma cells instead of fibers and vessels. As a result, the density of the figured pattern in the wood increases. The obtained data have a practical value and can be used in developing recommendations for Karelian birch cultivation.Betula pendulacarelica