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Repeated freeze–thaw cycles induce embolism in drought stressed conifers (Norway spruce, stone pine)

机译:反复的冻融循环会在干旱胁迫的针叶树(挪威云杉,石松)中引起栓塞

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Freezing and thawing lead to xylem embolism when gas bubbles caused by ice formation expand during the thaw process. However, previous experimental studies indicated that conifers are resistant to freezing-induced embolism, unless xylem pressure becomes very negative during the freezing. In this study, we show that conifers experienced freezing-induced embolism when exposed to repeated freeze–thaw cycles and simultaneously to drought. Simulating conditions at the alpine timberline (128 days with freeze–thaw events and thawing rates of up to 9.5 K h−1 in the xylem of exposed twigs during winter), young trees of Norway spruce [Picea abies (L.) Karst.] and stone pine (Pinus cembra L.) were exposed to 50 and 100 freeze–thaw cycles. This treatment caused a significant increase in embolism rates in drought-stressed samples. Upon 100 freeze–thaw cycles, vulnerability thresholds (50% loss of conductivity) were shifted 1.8 MPa (Norway spruce) and 0.8 MPa (stone pine) towards less negative water potentials. The results demonstrate that freeze–thaw cycles are a possible reason for winter-embolism in conifers observed in several field studies. Freezing-induced embolism may contribute to the altitudinal limits of conifers.
机译:当在解冻过程中由冰形成引起的气泡膨胀时,冻结和解冻导致木质部栓塞。但是,以前的实验研究表明,除非在冷冻过程中木质部压力变得非常负,否则针叶树对冷冻引起的栓塞具有抗性。在这项研究中,我们表明针叶树在反复的冻融循环和干旱的同时经历了冻融引起的栓塞。挪威的云杉模拟了高山林线的条件(在冻干的128天中,暴露的嫩枝木质部的融化速率高达9.5 K h-1 ),云杉,挪威的幼树[Picea abies(L. )岩溶和石松(Pinus cembra L.)经历了50和100次冻融循环。这种处理导致干旱胁迫样品的栓塞率显着增加。经过100次冻融循环后,脆弱性阈值(电导率损失50%)从1.8 MPa(挪威云杉)和0.8 MPa(石松)移向负水势较小。结果表明,在一些野外研究中观察到,冻融循环是针叶树冬季栓塞的可能原因。冻结引起的栓塞可能会导致针叶树的高度限制。

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