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相关概念视频

Xylem and Transpiration-driven Transport of Resources02:03

Xylem and Transpiration-driven Transport of Resources

26.2K
The xylem of vascular plants distributes water and dissolved minerals that are taken up by the roots to the rest of the plant. The cells that transport xylem sap are dead upon maturity, and the movement of xylem sap is a passive process.
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Meristems and Plant Growth02:36

Meristems and Plant Growth

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Plants grow throughout their lives; this is called indeterminate growth, and it distinguishes plants from most animals. Although certain parts of plants stop growing (e.g., leaves and flowers), others grow continuously—like roots and stems.
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Structural Properties and Dimensions of Lumber01:21

Structural Properties and Dimensions of Lumber

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Wood's structural properties derive from fibers aligned along the tree's length, contributing significantly to its mechanical strength. Wood exhibits up to twenty times greater tensile strength along these fibers compared to across them, and generally shows better performance under compression than tension. The length of fibers varies, with hardwoods having fibers around one twenty-fifth inch long and softwoods ranging from one-eighth to one-third inch.
The strength characteristics of...
366
Primary and Secondary Growth in Roots and Shoots03:02

Primary and Secondary Growth in Roots and Shoots

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Vascular plants, which account for over 90% of the Earth’s vegetation, all undergo primary growth—which lengthens roots and shoots. Many land plants, notably woody plants, also undergo secondary growth—which thickens roots and shoots.
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Seedless Vascular Plants03:24

Seedless Vascular Plants

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Seedless Vascular Plants Were the First Tall Plants on Earth
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Introduction to Wood01:19

Introduction to Wood

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Wood, derived from trees, is a versatile and widely used construction material. Trees feature a trunk surrounded by a protective layer of dead bark. Beneath this outer layer lies the living bark, followed by the cambium, and then the sapwood which transitions into heartwood as it matures. At the center of the trunk is the pith. The age of a tree can be discerned by examining its growth rings, which are concentric bands visible in the trunk's cross-section.
The structural integrity of the...
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相关实验视频

Updated: Jan 10, 2026

Using High Resolution Computed Tomography to Visualize the Three Dimensional Structure and Function of Plant Vasculature
11:49

Using High Resolution Computed Tomography to Visualize the Three Dimensional Structure and Function of Plant Vasculature

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叶子的长度预测了Twig Xylem 血管的直径,跨越了雄性精子.

Patricia Rivera1,2, Tommaso Anfodillo3, Mark E Olson1

  • 1Instituto de Biología, Universidad Nacional Autónoma de México, Coyoacán, Ciudad de México, Mexico.

Plant, cell & environment
|November 25, 2025
PubMed
概括

较长的叶子有助于植物通过促进茎中更宽的血管来有效地运输水. 这一发现表明,叶子长度对于在植物生长期间保持供水至关重要.

关键词:
适应 适应 适应 适应管道的扩大 管道的扩大这些船只都是船只.克西勒姆液压系统是什么

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Xylem Water Distribution in Woody Plants Visualized with a Cryo-scanning Electron Microscope
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Xylem Water Distribution in Woody Plants Visualized with a Cryo-scanning Electron Microscope

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A Technical Perspective in Modern Tree-ring Research - How to Overcome Dendroecological and Wood Anatomical Challenges
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相关实验视频

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Using High Resolution Computed Tomography to Visualize the Three Dimensional Structure and Function of Plant Vasculature
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Xylem Water Distribution in Woody Plants Visualized with a Cryo-scanning Electron Microscope
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Xylem Water Distribution in Woody Plants Visualized with a Cryo-scanning Electron Microscope

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A Technical Perspective in Modern Tree-ring Research - How to Overcome Dendroecological and Wood Anatomical Challenges
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科学领域:

  • 植物生理学 植物生理学
  • 克西勒姆液压系统是什么?
  • 植物解剖学 植物解剖学

背景情况:

  • 增加工厂高度会增加液压阻力,因为水运输路径较长.
  • 干管的扩大可以减轻这种阻力,但不能完全弥补这种阻力.
  • 叶子形态在茎液压中的作用仍然未被充分探索.

研究的目的:

  • 为了研究树叶长度和树干液压导电性之间的关系,在angiosperms.
  • 为了确定叶子的长度是否会影响树干中的树叶血管直径.
  • 评估叶子引起的管道扩大对整体植物水运输的贡献.

主要方法:

  • 跨多种种植的种植苗种类进行比较分析.
  • 测量叶子长度和树枝根底和枝尖上的树叶容器直径.
  • 应用流体动力学模型来评估液压电阻和导电能力.

主要成果:

  • 叶子的长度显著预测了树叶底部的血管直径.
  • 皮质体血管直径正面的尺度与血管直径在枝尖.
  • 较长的叶子与更宽的茎管相关,增强了整个茎的透性.
  • 流体动力学模型表明,叶子诱导的管道扩大可以缓冲叶子长度增加的液压成本.

结论:

  • 叶子的长度是影响茎管道扩大和液压导电性的关键因素.
  • 较宽的茎管道,由较长的叶子驱动,可以显著提高水运输效率.
  • 叶子形态在保持植物在生长期间的液压供应中起着至关重要的作用,补充了基于茎的适应.