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Cavitation fatigue. Embolism and refilling cycles can weaken the cavitation resistance of xylem

机译:空化疲劳。栓塞和填充周期会削弱木质部的抗气蚀性

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摘要

Although cavitation and refilling cycles could be common in plants, it is unknown whether these cycles weaken the cavitation resistance of xylem. Stem or petiole segments were tested for cavitation resistance before and after a controlled cavitation-refilling cycle. Cavitation was induced by centrifugation, air drying of shoots, or soil drought. Except for droughted plants, material was not significantly water stressed prior to collection. Cavitation resistance was determined from "vulnerability curves" showing the percentage loss of conductivity versus xylem pressure. Two responses were observed. "Resilient" xylem (Acer negundo and Alnus incana stems) showed no change in cavitation resistance after a cavitation-refilling cycle. In contrast, "weakened" xylem (Populus angustifolia, P. tremuloides, Helianthus annuus stems, and Aesculus hippocastanum petioles) showed considerable reduction in cavitation resistance. Weakening was observed whether cavitation was induced by centrifugation, air dehydration, or soil drought. Observations from H. annuus showed that weakening was proportional to the embolism induced by stress. Air injection experiments indicated that the weakened response was a result of an increase in the leakiness of the vascular system to air seeding. The increased air permeability in weakened xylem could result from rupture or loosening of the cellulosic mesh of interconduit pit membranes during the water stress and cavitation treatment. [References: 23]
机译:尽管空化和补充循环在植物中可能很常见,但尚不清楚这些循环是否会削弱木质部的耐空化性。在受控的气蚀补充循环之前和之后,测试茎或叶柄节段的抗气蚀性。空化是通过离心,芽的空气干燥或土壤干旱引起的。除干旱植物外,材料在收集前没有明显的水分胁迫。由“脆弱性曲线”确定耐气蚀性,其显示电导率损失与木质部压力的百分比。观察到两个响应。空化-再填充循环后,“弹性”木质部(宏A(Acer negundo)和赤nu(Alnus incana)茎)显示出抗空化性没有变化。相比之下,“弱化”的木质部(Populus angustifolia,P。tremuloides,Helianthus annuus茎和七叶树的叶柄)显示出明显的抗空化作用。观察到弱化是由于离心,空气脱水还是土壤干旱引起的。 H. annuus的观察表明,减弱与压力引起的栓塞成正比。空气注入实验表明,响应减弱是血管系统对空气播种的泄漏增加的结果。在弱化木质部中增加的透气性可能是由于在水分胁迫和空化处理过程中,导管间凹坑膜的纤维素网眼破裂或松弛所致。 [参考:23]

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