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Titlebook: Cellulose and Other Natural Polymer Systems; Biogenesis, Structur R. Malcolm Brown Book 1982 Plenum Press, New York 1982 Permeation.Polyeth

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https://doi.org/10.1007/978-3-642-24927-3 in lower animals, e.g., in bristles of polychaetes and hydrozoan thecae, and in the cyst walls of ciliates, as well as in the cell walls of bacteria [.-lactic-acid-substituted chitin in murein (for a review, see Muzzarelli, 1977)].
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Optimization for Industrial Problemsical functions. Such studies with enzymatic systems that generate .-glucans could be expected to be similarly useful, with implications for questions in cell biology about the localization of these events and for questions in physiology about their relation to and control of growth and development.
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Callose-Deposit Formation in Radish Root Hairsernal factors. “Wound callose” is a phrase coined to describe callose synthesized in response to mechanical injury to plant tissue (Currier, 1957) and can describe equally well that callose formed on chemical damage, in response to fungal, bacterial, or viral infection, or in response to environmental stress.
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Book 1982 the editor was to organize a book dealing principally but not exclusively with cellulose. A brief background may help to provide the reader with information to understand the reasons for the specific selections within this volume. better During the past decade, we have witnessed significant changes
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https://doi.org/10.1007/978-3-642-24418-6liest biological applications of electron microscopy. Nonetheless, progress in understanding the cytology of cell walls and especially the biogenesis of cellulosic microfibrils is slow at best. Where are microfibrils assembled, and what structures are involved in assembly? How are microfibrils orien
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https://doi.org/10.1007/978-3-642-24794-1though the structure and function of the cell wall have been studied extensively, relatively little attention has been devoted to the mechanisms by which a cell wall is initially assembled outside the plasma membrane. Understanding the steps and pattern in which various polymers are assembled into a
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Ontology Requirements Specificationthat delimit these spaces exist only because they were secreted by living protoplasts that once filled the spaces. The protoplast is the plant cell, as we now know it. Among higher plants particularly, protoplasts rarely exist naturally in the absence of their cell walls, and experimentalists have l
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