...
首页> 外文期刊>Plant physiology >Freeze-Thaw Stress: Effects of Temperature on Hydraulic Conductivity and Ultrasonic Activity in Ten Woody Angiosperms1
【24h】

Freeze-Thaw Stress: Effects of Temperature on Hydraulic Conductivity and Ultrasonic Activity in Ten Woody Angiosperms1

机译:冻融应力:温度对十个木质被子植物水力传导率和超声活性的影响1

获取原文
获取原文并翻译 | 示例

摘要

Freeze-thaw events can affect plant hydraulics by inducing embolism. This study analyzed the effect of temperature during the freezing process on hydraulic conductivity and ultrasonic emissions (UE). Stems of 10 angiosperms were dehydrated to a water potential at 12% percentage loss of hydraulic conductivity (PLC) and exposed to freeze-thaw cycles. The minimal temperature of the frost cycle correlated positively with induced PLC, whereby species with wider conduits (hydraulic diameter) showed higher freezethaw- induced PLC. Ultrasonic activity started with the onset of freezing and increased with decreasing subzero temperatures, whereas no UE were recorded during thawing. The temperature at which 50% of UE were reached varied between 29.1°C and 231.0°C across species. These findings indicate that temperatures during freezing are of relevance for bubble formation and air seeding. We suggest that species-specific cavitation thresholds are reached during freezing due to the temperature-dependent decrease of water potential in the ice, while bubble expansion and the resulting PLC occur during thawing. UE analysis can be used to monitor the cavitation process and estimate freeze-thaw-induced PLC.
机译:冻融事件可通过诱发栓塞影响植物的水力学。这项研究分析了冷冻过程中温度对水力传导率和超声发射(UE)的影响。将10个被子植物的茎在水力传导率(PLC)损失12%的条件下脱水至水势,并进行冻融循环。霜冻周期的最低温度与诱导的PLC呈正相关,因此具有较宽导管(水力直径)的物种显示出较高的冻融诱导的PLC。超声波活动从冻结开始开始,并随着零下温度的降低而增加,而在融化过程中没有记录到UE。不同物种的UE达到50%的温度在29.1°C和231.0°C之间变化。这些发现表明,冷冻过程中的温度与气泡的形成和空气注入有关。我们建议,由于冰中水势的温度依赖性降低,在冻结过程中达到了特定于物种的空化阈值,而在融化过程中会发生气泡膨胀和所产生的PLC。 UE分析可用于监视空化过程并估计冻融诱导的PLC。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号