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Research ArticleEnvironmental and Stress Physiology
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A Role for Membrane Lipid Polyunsaturation in Chloroplast Biogenesis at Low Temperature

Suzanne Hugly, Chris Somerville
Suzanne Hugly
Michigan State University-Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, Michigan 48824
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Chris Somerville
Michigan State University-Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, Michigan 48824
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Published May 1992. DOI:

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Abstract

Two different mutants of Arabidopsis thaliana deficient in chloroplast membrane lipid polyunsaturation were indistinguishable in appearance from the wild-type when grown at 22°C. By contrast, leaf tissues of the mutants that developed during growth at 5°C were chlorotic, whereas the wild type was not. This is the first direct evidence that chloroplast lipid polyunsaturation contributes to low-temperature fitness. Chloroplasts from mutant lines grown at 5°C were much smaller than those of the wild-type, and the thylakoid membrane content was reduced by up to 70%. However, there was no discernible effect of low temperature on chloroplasts that developed prior to exposure to low temperatures. These and related observations suggest that the high degree of chloroplast membrane lipid polyunsaturation is required for some aspect of chloroplast biogenesis.

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A Role for Membrane Lipid Polyunsaturation in Chloroplast Biogenesis at Low Temperature
Suzanne Hugly, Chris Somerville
Plant Physiology May 1992, 99 (1) 197-202;

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A Role for Membrane Lipid Polyunsaturation in Chloroplast Biogenesis at Low Temperature
Suzanne Hugly, Chris Somerville
Plant Physiology May 1992, 99 (1) 197-202;
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Plant Physiology
Vol. 99, Issue 1
May 1992
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More in this TOC Section

  • Iron-Superoxide Dismutase Expression in Transgenic Alfalfa Increases Winter Survival without a Detectable Increase in Photosynthetic Oxidative Stress Tolerance
  • Role of Hormones in the Induction of Iron Deficiency Responses in Arabidopsis Roots
  • Reduction and Coordination of Arsenic in Indian Mustard
Show more Environmental and Stress Physiology

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