Overwintering stress of Vaccinium vitis-idaea in the absence of snow cover

被引:27
|
作者
Taulavuori, Kari [1 ]
Bauer, Elisa [2 ]
Taulavuori, Erja
机构
[1] Univ Oulu, Dept Biol, FIN-90014 Oulu, Finland
[2] Univ Technol, Darmstadt, Germany
关键词
Chlorophyll fluorescence; Climatic warming; Frost resistance; Osmotic potential; Overwintering stress; Snow cover; Vaccinium vitis-idaea; SCOTS PINE; CHLOROPHYLL FLUORESCENCE; COLD-ACCLIMATION; PHOTOSYNTHESIS; WINTER; TEMPERATURE; PHOTOINHIBITION; PLANTS; DEACCLIMATION; DESICCATION;
D O I
10.1016/j.envexpbot.2011.02.009
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
A snow manipulation experiment aimed to assess risks of direct freezing injury, freeze-induced dehydration and winter desiccation in the absence of snow cover on lingonberry (Vaccinium vitis-idaea). Frames with sheet-plastic sides and removable lids were used in this experiment for two purposes: to prevent accumulation of snow in mid-winter and to provide extra heat during early spring. Leaves were analyzed for frost hardiness, tissue water content and osmotic concentrations, and photoinhibition (Fv/Fm) during the period from the 10th of February to the 7th of April. The natural snow accumulation was low indicated by a minor difference in minimum temperatures between the frame treatment and naturally snow-covered plots. The heating effect of the frames started gradually at the end of February along with increasing solar elevation angles, and was highest at the beginning of April. Frost hardiness peaked in March as a consequence of cold periods, but it was practically lost by the beginning of April. Tissue water content decreased gradually at first, becoming greatly decreased later due to the extra heat. In accordance, the tissue osmotic concentrations increased first gradually, followed by a dramatic increase. Photoinhibition increased uniformly with increasing solar radiation, but at the end showed a sharp increment within a few days, obviously also indicating the effect of heating. It was concluded that neither lethal freezing stress nor significant freeze-induced dehydration occurred during the experiment. However, plants that overwintered without snow suffered from severe winter desiccation injuries due to the combination of solar heat and frozen soil. Although the desiccation stress was possibly a lethal factor, it was preceded by long-term and continued photoinhibition. It was concluded that during overwintering, chamaephyte species may suffer from both freezing and winter desiccation in the absence of protecting snow cover. However, during mild winters provided by climatic change scenarios, the risk of winter desiccation will be more probable. In relation to the future climate, it was concluded that winter desiccation and photoinhibition may develop gradually during a snowless winter and would, even if they did not reach a lethal level by themselves, possibly reduce frost hardiness. (C) 2011 Elsevier B.V. All rights reserved.
引用
收藏
页码:397 / 403
页数:7
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