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生长在等温线以北-40摄氏度地区的木本植物类群中的深度过冷现象。

Deep Undercooling in Woody Taxa Growing North of the -40 degrees C Isotherm.

作者信息

Gusta L V, Tyler N J, Chen T H

机构信息

Crop Development Centre, University of Saskatchewan, Saskatoon, Saskatchewan S7N 0W0 Canada.

出版信息

Plant Physiol. 1983 May;72(1):122-8. doi: 10.1104/pp.72.1.122.

Abstract

The freezing of deep undercooled water in cold-hardened 3-year-old stems of 16 woody taxa was studied in mid-January by differential thermal analysis. The initiation temperature and the size of the low temperature exotherm (LTE) were compared for nonthawed, thawed, and freeze-killed stems. In general, the initiation temperature of the LTE for nonthawed stems occurred at a lower temperature than for thawed stems and freeze-killed stems. In some cases, no LTE was detected in nonthawed stems although a LTE was detected after thawing. The size of the LTE increased after thawing the stem and also after the stem was freeze killed. The LTE observed in one species disappeared upon exposure to continuous low sub-zero temperatures. Results suggest that undercooling which subsequently results in the LTE in woody stems is due to the cell wall and the plasma membrane. During periods of prolonged freezing, cellular water migrates from the cells which undercool to extracellular ice. This results in a concentration of cell solutes which lowers the homogeneous nucleation temperature of the cell sap. The cold hardiness of nonthawed and thawed stems was compared by a controlled freeze test. In general, thawing had little effect on the survival temperature whereas it had a marked effect on the initiation of the LTE.

摘要

1月中旬,通过差热分析研究了16种木本分类群3年生冷驯化茎中深度过冷水的冻结情况。比较了未解冻、解冻和冻害致死茎的起始温度和低温放热峰(LTE)的大小。一般来说,未解冻茎的LTE起始温度低于解冻茎和冻害致死茎。在某些情况下,未解冻茎中未检测到LTE,但解冻后检测到了LTE。茎解冻后以及茎冻害致死之后,LTE的大小都增加了。在一个物种中观察到的LTE在持续低温零下温度下消失。结果表明,随后在木本茎中导致LTE的过冷是由于细胞壁和质膜。在长时间冷冻期间,细胞内的水从过冷的细胞迁移到细胞外冰中。这导致细胞溶质浓度增加,从而降低了细胞液的均匀成核温度。通过控制冷冻试验比较了未解冻茎和解冻茎的抗寒能力。一般来说,解冻对存活温度影响不大,而对LTE的起始有显著影响。

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