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  • Low temperatures determine the occurrence of organisms, depending on how intense they are and for how long they last and how often and for how long the thawing takes place in between episodes of freezing. The rate of cooling plant parts can predict how they will be frost damaged. Conditions for the plant strategy to tolerate low-temperature extracellular water freezing are essential for the survival at slow freezing rate of 1°C h-1–3°C h-1 required for equilibrium frozen water. The strategy for extracellular freezing and amorphous state is a prerequisite for a higher rate of freezing and the low water content in tissues.
  • Low temperatures determine the occurrence of organisms, depending on how intense they are and for how long they last and how often and for how long the thawing takes place in between episodes of freezing. The rate of cooling plant parts can predict how they will be frost damaged. Conditions for the plant strategy to tolerate low-temperature extracellular water freezing are essential for the survival at slow freezing rate of 1°C h-1–3°C h-1 required for equilibrium frozen water. The strategy for extracellular freezing and amorphous state is a prerequisite for a higher rate of freezing and the low water content in tissues. (en)
Title
  • Physiological and Biophysical Responses of Plants under Low and Ultralow Temperatures
  • Physiological and Biophysical Responses of Plants under Low and Ultralow Temperatures (en)
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  • Physiological and Biophysical Responses of Plants under Low and Ultralow Temperatures
  • Physiological and Biophysical Responses of Plants under Low and Ultralow Temperatures (en)
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  • RIV/00027006:_____/14:00002944!RIV15-MSM-00027006
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  • 36594
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  • RIV/00027006:_____/14:00002944
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  • freezing stress; cold hardening; glass transition; heat capacity; adaptation to low temperatures (en)
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  • [55943CECFC2C]
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  • Boca Raton, Florida, USA
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  • neuveden
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  • Handbook of Plant and Crop Physiology
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  • Faltus, Miloš
  • Zámečník, Jiří
number of pages
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  • 10.1201/b16675-33
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  • CRC Press
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  • 978-1-4665-5328-6
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