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首页> 外文期刊>Journal of Biological Physics >The Significance of Pit Shape for Hydraulic Isolation of Embolized Conduits of Vascular Plants During Novel Refilling
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The Significance of Pit Shape for Hydraulic Isolation of Embolized Conduits of Vascular Plants During Novel Refilling

机译:新型再灌装过程中血管植物栓塞液压隔离液压隔离的重要性

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摘要

During plant water transport, the water in the conducting tissue (xylem) is under tension. The system is then in a metastable state and prone to bubble development and subsequent embolism blocking further water transport. It has recently been demonstrated, that embolism can be repaired under tension (= novel refilling). A model (Pit Valve Mechanism = PVM) has also been suggested which is based on the development of a special meniscus in the pores (pits) between adjacent conduits. This meniscus is expected to be able to isolate embolized conduits from neighbouring conduits during embolism repair. In this contribution the stability of this isolating meniscus against perturbations is considered which inevitably occur in natural environments. It can be shown that pit shape affects the stability of PVM fundamentally in the case of perturbation. The results show that a concave pit shape significantly supports the stability of PVM. Concave pit shape should thus be of selective value for species practicing novel refilling.
机译:在植物水运输过程中,导电组织中的水(XYLEM)张力。然后该系统处于亚稳态状态,容易发生泡沫发育和随后的栓塞阻挡进一步的水运输。最近已经证明,可以在张力下修复栓塞(=新型重新填充)。还提出了一种模型(凹坑机构= PVM),其基于相邻导管之间的孔(凹坑)中的特殊弯月面的开发。预计该半月板将能够在栓塞修复期间将栓塞管道孤立栓塞管道。在这一贡献中,认为这种隔离弯液面陷入扰动的稳定性被认为是在自然环境中不可避免地发生的。可以表明,在扰动的情况下,凹坑形状从根本上影响PVM的稳定性。结果表明,凹坑形状显着支持PVM的稳定性。因此,凹坑形状应具有用于练习新型重新填充物种的选择性值。

著录项

  • 来源
    《Journal of Biological Physics 》 |2005年第1期| 共15页
  • 作者

    W. Konrad; A. Roth-Nebelsick;

  • 作者单位

    Institut fur Geowissenschaften University of Tubingen Sigwartstrasse 10 D-72076 Tübingen Germany;

    Institut fur Geowissenschaften University of Tubingen Sigwartstrasse 10 D-72076 Tübingen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学 ;
  • 关键词

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