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[beta]-Glucan Synthesis in the Cotton Fiber (IV. In Vitro Assembly of the Cellulose I Allomorph)

K. Kudlicka, R. M. Brown Jr, L. Li, J. H. Lee, H. Shin, S. Kuga
K. Kudlicka
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R. M. Brown Jr
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L. Li
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J. H. Lee
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H. Shin
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S. Kuga
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Published January 1995. DOI: https://doi.org/10.1104/pp.107.1.111

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Abstract

In vitro assembly of cellulose from plasma membrane extracts of the cotton (Gossypium hirsutum) fiber was enriched by a combination of 3-(N-morpholino)propanesulfonic acid extraction buffer and two independent digitonin solubilization steps consisting of 0.05% digitonin (SE1) followed by 1% digitonin (SE2). Glucan synthase activity assays revealed that, although the SE2 fraction possessed higher activity, only 8.6% of the in vitro product survived acetic/nitric acid treatment. On the other hand, the SE1 fraction was less active, but 32.1% of the total glucan in vitro product was resistant to acetic/nitric acid. In vitro products synthesized from the SE1 fraction contained [beta]-1,3-glucan and fibrillar cellulose I, whereas the SE2 fraction produced [beta]-1,3-glucan and cellulose II. Both celluloses assembled in vitro were labeled with cellobiohydrolase I-gold complex, and the electron diffraction patterns of both products from SE1 and SE2 revealed cellulose I and cellulose II, respectively. Contamination of native cellulose was ruled out by extensive evidence from autoradiography of the ethanol-insoluble and acetic/nitric acid-insoluble materials, including three different controls.

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[beta]-Glucan Synthesis in the Cotton Fiber (IV. In Vitro Assembly of the Cellulose I Allomorph)
K. Kudlicka, R. M. Brown Jr, L. Li, J. H. Lee, H. Shin, S. Kuga
Plant Physiology Jan 1995, 107 (1) 111-123; DOI: 10.1104/pp.107.1.111

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[beta]-Glucan Synthesis in the Cotton Fiber (IV. In Vitro Assembly of the Cellulose I Allomorph)
K. Kudlicka, R. M. Brown Jr, L. Li, J. H. Lee, H. Shin, S. Kuga
Plant Physiology Jan 1995, 107 (1) 111-123; DOI: 10.1104/pp.107.1.111
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Plant Physiology
Vol. 107, Issue 1
Jan 1995
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More in this TOC Section

  • Dedicated Roles of Plastid Transketolases during the Early Onset of Isoprenoid Biogenesis in Pepper Fruits1
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