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Titlebook: Biophysical control of microfibril orientation in plant cell walls; Aquatic and terrestr J. D. Boyd Book 1985 Springer Science+Business Med

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https://doi.org/10.1007/978-94-009-5065-8cell; development; phloem; plant; plant morphology; wood; Tree Biology
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978-94-010-8742-1Springer Science+Business Media Dordrecht 1985
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Histopathology of chronic rejection ‘explain’ differences in microfibril orientation through the cell wall thickness. It could be helpful to review the function and/or effect of particular microfibril arrangements, during both the meristematic stage of growth, and in subsequent primary growth phases. It should be noted from the many
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https://doi.org/10.1057/9781137319241fibril arrangements in tip growth of cells, which led to Roelofsen and Houwink’s (1953) formulation of MGH, to explain variations in microfibril orientation at different positions in the thickness of the cell wall.
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https://doi.org/10.1057/9781137319241chitecture is represented in the very large number of species of aquatic and terrestrial plants. Correspondingly, it should be realised that any theory, that has a potential to explain the reasons for and effects of such differences, could provide a valuable extension of scientific understanding of
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Contemporary Mechanisms of Social Change,a on cell wall architecture. For example for some types of cell walls, earlier published observations have indicated that microfibrils were in random orientation, but new techniques have shown that, within the lamellae they are in perfect parallel alignment over relatively long distances (e.g. Kishi
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