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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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发表于 2025-3-21 16:19:00 | 显示全部楼层 |阅读模式
期刊全称Biophysical control of microfibril orientation in plant cell walls
期刊简称Aquatic and terrestr
影响因子2023J. D. Boyd
视频video
学科分类Forestry Sciences
图书封面Titlebook: Biophysical control of microfibril orientation in plant cell walls; Aquatic and terrestr J. D. Boyd Book 1985 Springer Science+Business Med
影响因子Within the extreme diversity of aquatic and terrestrial plant genera, each has characteristic cell wall forms. A number of hypotheses have been advanced to explain differences in microfibril arrangements across anyone such wall. Of those, only the ‘multinet‘ theory, which involves the postulation of reorientation of microfibrils caused by cell extension, now has a substantial number of ad­ herents. However, many scientists are sceptical of its validity; obviously it is incompatible with various observed microfibril arrangements. The tenet of this study is that any such hypothesis can be valid only if it is applicable to all plant forms and wall types. Initially, reanalyses are made of data claimed to confirm justification for multi net postulations. The results show that previous deductions from those data, in support of multinet, are subject to serious challenge. Similarly, a re-examination of the observations, which inspired the multinet theory, shows they have a more logical explanation. Herein, it is concluded that cell wall development involves biophysical factors, which neces­ sarily prevent multinet‘s postulated large reorientations of microfibrils, after their formation. Un
Pindex Book 1985
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发表于 2025-3-21 23:57:12 | 显示全部楼层
https://doi.org/10.1057/9781137003423s of the cell wall; (ii) the character of each layer; and (iii) the importance of the variations involved. The review is directed also to the practicability of removing some ambiguities in general concepts of cell wall formation.
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https://doi.org/10.1057/9781137319241fore a better understanding of determinants, of the various arrangements of microfibrils in cell walls, would seem to depend on identification of the basic principles and biophysics involved in controlling or stimulating microfibril formation at specific orientations.
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https://doi.org/10.1057/9781137319241 constituents, and the biochemical action of a bond-loosening agent. However it includes the significant change in appearance of the microfibrillar network, that occurs only in a few outer lamellae of cells which extend by tip growth.
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Critical preliminary considerations for a new theory on microfibril orientation,fore a better understanding of determinants, of the various arrangements of microfibrils in cell walls, would seem to depend on identification of the basic principles and biophysics involved in controlling or stimulating microfibril formation at specific orientations.
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Reassessment of data relating to the multinet theory of microfibil reorientation,available from studies by Probine and Preston (1961), Frei and Preston (1961a, b), Green and Chapman (1955), Green (1958, 1960a) and Gertel and Green (1977). Each of those sets of data will be discussed and reanalysed to the extent practicable. In addition, reference will be made to some more recent observations that are claimed to support MGH.
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