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Research ArticleCellular and Structural Biology
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An Abundant, Highly Conserved Tonoplast Protein in Seeds

Kenneth D. Johnson, Eliot M. Herman, Maarten J. Chrispeels
Kenneth D. Johnson
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Eliot M. Herman
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Maarten J. Chrispeels
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Published November 1989. DOI: https://doi.org/10.1104/pp.91.3.1006

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Abstract

We have isolated the membranes of the protein storage vacuoles (protein bodies) from Phaseolus vulgaris cotyledons and purified an integral membrane protein with Mr 25,000 (TP 25). Antiserum to TP 25 recognizes an abundant polypeptide in the total cell extracts of many different seeds (monocots, dicots, and a gymnosperm), and specifically labels the vacuolar membranes of thin-sectioned soybean embryonic axes and cotyledons. TP 25 was not found in the starchy endosperm of barley and wheat or the seed coats of bean but was present in all seed parts examined that consist of living cells at seed maturity. The abundance of TP 25 was not correlated with the amount of storage protein in seed tissue, and the protein was not found in leaves that accumulate leaf storage protein. On the basis of its abundance, evolutionary conservation, and distribution in the plant, we propose that TP 25 may play a role in maintaining the integrity of the tonoplast during the dehydration/rehydration sequence of seeds.

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An Abundant, Highly Conserved Tonoplast Protein in Seeds
Kenneth D. Johnson, Eliot M. Herman, Maarten J. Chrispeels
Plant Physiology Nov 1989, 91 (3) 1006-1013; DOI: 10.1104/pp.91.3.1006

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An Abundant, Highly Conserved Tonoplast Protein in Seeds
Kenneth D. Johnson, Eliot M. Herman, Maarten J. Chrispeels
Plant Physiology Nov 1989, 91 (3) 1006-1013; DOI: 10.1104/pp.91.3.1006
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Plant Physiology
Vol. 91, Issue 3
November 1989
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More in this TOC Section

  • The Isolation of Actin from Pea Roots by DNase I Affinity Chromatography
  • Fourier Transform Infrared Microspectroscopy Is a New Way to Look at Plant Cell Walls
  • Flow Cytometry of Spinach Chloroplasts
Show more Cellular and Structural Biology

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