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Drivers of apoplastic freezing in gymnosperm and angiosperm branches

机译:裸子植物和被子植物分支的质外性冻结的驱动因素

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It is not well understood what determines the degree of supercooling of apoplastic sap in trees, although it determines the number and duration of annual freeze–thaw cycles in a given environment. We studied the linkage between apoplastic ice nucleation temperature, tree water status, and conduit size. We used branches of 10 gymnosperms and 16 angiosperms collected from an arboretum in Helsinki (Finland) in winter and spring. Branches with lower relative water content froze at lower temperatures, and branch water content was lower in winter than in spring. A bench drying experiment with Picea abies confirmed that decreasing branch water potential decreases apoplastic ice nucleation temperature. The studied angiosperms froze on average 2.0 and 1.8°C closer to zero Celsius than the studied gymnosperms during winter and spring, respectively. This was caused by higher relative water content in angiosperms; when branches were saturated with water, apoplastic ice nucleation temperature of gymnosperms increased to slightly higher temperature than that of angiosperms. Apoplastic ice nucleation temperature in sampled branches was positively correlated with xylem conduit diameter as shown before, but saturating the branches removed the correlation. Decrease in ice nucleation temperature decreased the duration of freezing, which could have an effect on winter embolism formation via the time available for gas escape during ice propagation. The apoplastic ice nucleation temperature varied not only between branches but also within a branch between consecutive freeze–thaw cycles demonstrating the stochastic nature of ice nucleation.
机译:尽管它决定了给定环境中年度冻融循环的次数和持续时间,但尚不清楚如何决定树木中质外生树汁的过冷程度。我们研究了质外生冰成核温度,树木水状态和导管尺寸之间的联系。我们使用了冬季和春季从赫尔辛基(芬兰)植物园采集的10个裸子植物和16个被子植物的分支。相对含水量较低的树枝在较低温度下结冰,冬季的树枝含水量低于春季。用云杉云杉进行的台面干燥实验证实,降低分支水势会降低质外体冰的成核温度。被研究的被子植物在冬季和春季分别比被研究的裸子植物平均冻结2.0和1.8°C,接近零摄氏度。这是由于被子植物的相对含水量较高所致。当分支被水饱和时,裸子植物的质外体冰核化温度升高到比被子植物略高的温度。如前所示,取样分支中的质外体冰成核温度与木质部导管直径呈正相关,但饱和分支则消除了相关性。冰成核温度的降低减少了冻结的持续时间,这可能通过在冰传播过程中可用于气体逸出的时间来影响冬季栓塞的形成。质外冰成核温度不仅在分支之间变化,而且在连续的冻融循环之间的分支内也变化,这表明冰成核的随机性。

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