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Recovery of photosynthetic capacity in Vaccinium vitis-idaea during mild spells in winter.

机译:冬季温和季节恢复越桔越桔的光合能力。

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Recent studies suggest that evergreen plants may maintain their photosynthetic capacity through the winter. Since mild winters are predicted to be more frequent in the future, the metabolic activity of plants is also likely to increase. The aim of the present study was to assess how various environmental factors, such as temperature, photoperiod and preceding frost, affect the recovery of photosynthesis during a mild spell in winter. The recovery of photosynthesis was studied in a series of growth chamber experiments where the overwintering of lingonberry (Vaccinium vitis-idaea) was interrupted by an intermittent warm spell of 1 week during different phases of winter. Rapid activation was observed in all the experiments during the first 3-4 days. No obvious effects of the phase of winter or photoperiod on the recovery of photosynthesis were observed, but a severe freezing treatment prior to the warm spell retarded the recovery significantly. Once recovered, however, lingonberry was able to maintain high rates of photosynthesis even at near-freezing temperatures, which prevail in their natural sub-nivean environment. The apparent quantum yield of photosynthesis remained high through the winter for lingonberry. This may prove advantageous for evergreen dwarf shrubs which overwinter in dim environments under snow.Digital Object Identifier http://dx.doi.org/10.1007/s11258-011-9918-y
机译:最近的研究表明,常绿植物可能在整个冬季保持其光合能力。由于预计将来温和的冬季会更加频繁,因此植物的代谢活性也可能会增加。本研究的目的是评估温度,光周期和先前的霜冻等各种环境因素如何影响冬季温和季节光合作用的恢复。在一系列生长室实验中研究了光合作用的恢复,其中越橘越冬越冬被不同时期1周的间歇性温暖打断。冬天的阶段。在前3-4天的所有实验中均观察到快速激活。没有观察到冬季或光周期阶段对光合作用恢复的明显影响,但是在温暖季节之前进行严格的冷冻处理显着阻碍了恢复。然而,一旦恢复,越橘即使在接近冰点的温度下也能保持较高的光合作用,这在其自然的亚维南环境中很普遍。越橘整个冬季的光合作用的表观量子产率仍然很高。这对于常绿矮化灌木在雪地上昏暗的环境中越冬可能证明是有利的。数字对象标识符http://dx.doi.org/10.1007/s11258-011-9918-y

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