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Research ArticleEnvironmental and Stress Physiology
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Sucrose Phosphate Synthase and Sucrose Accumulation at Low Temperature

Charles L. Guy, Joan L. A. Huber, Steven C. Huber
Charles L. Guy
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Joan L. A. Huber
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Steven C. Huber
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Published September 1992. DOI: https://doi.org/10.1104/pp.100.1.502

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Abstract

The influence of growth temperature on the free sugar and sucrose phosphate synthase content and activity of spinach (Spinacia oleracea) leaf tissue was studied. When plants were grown at 25°C for 3 weeks and then transferred to a constant 5°C, sucrose, glucose, and fructose accumulated to high levels during a 14-d period. Predawn sugar levels increased from 14- to 20-fold over the levels present at the outset of the low-temperature treatment. Sucrose was the most abundant free sugar before, during, and after exposure to 5°C. Leaf sucrose phosphate synthase activity was significantly increased by the low-temperature treatment, whereas sucrose synthase and invertases were not. Synthesis of the sucrose phosphate synthase subunit was increased during and after low-temperature exposure and paralleled an increase in the steady-state level of the subunit. The increases in sucrose and its primary biosynthetic enzyme, sucrose phosphate synthase, are discussed in relation to adjustment of metabolism to low nonfreezing temperature and freezing stress tolerance.

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Sucrose Phosphate Synthase and Sucrose Accumulation at Low Temperature
Charles L. Guy, Joan L. A. Huber, Steven C. Huber
Plant Physiology Sep 1992, 100 (1) 502-508; DOI: 10.1104/pp.100.1.502

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Sucrose Phosphate Synthase and Sucrose Accumulation at Low Temperature
Charles L. Guy, Joan L. A. Huber, Steven C. Huber
Plant Physiology Sep 1992, 100 (1) 502-508; DOI: 10.1104/pp.100.1.502
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Plant Physiology
Vol. 100, Issue 1
September 1992
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More in this TOC Section

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  • Enhancement of Na+ Uptake Currents, Time-Dependent Inward-Rectifying K+ Channel Currents, and K+Channel Transcripts by K+ Starvation in Wheat Root Cells
Show more Environmental and Stress Physiology

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