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相关概念视频

Plasmodesmata01:20

Plasmodesmata

2.8K
In a multicellular organism, cells must communicate to work together in a coordinated manner. One way that cells communicate is through direct contact with other cells. The points of contact that connect adjacent cells are called intercellular junctions.
Intercellular junctions are a feature of fungal, plant, and animal cells. However, different types of junctions are found in different kinds of cells. Intercellular junctions found in animal cells include tight junctions, gap junctions, and...
2.8K
What is Cell Signaling?02:03

What is Cell Signaling?

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Despite the protective membrane that separates a cell from the environment, cells need the ability to detect and respond to environmental changes. Additionally, cells often need to communicate with one another. Unicellular and multicellular organisms use a variety of cell signaling mechanisms to communicate to respond to the environment.
117.7K
Primary and Secondary Growth in Roots and Shoots03:02

Primary and Secondary Growth in Roots and Shoots

57.1K
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.
57.1K
Contact-dependent Signaling01:19

Contact-dependent Signaling

44.6K
Contact-dependent signaling, as the name suggests, requires that communicating cells be in direct contact with each other. This is achieved either through receptor-ligand interactions or by specialized cytoplasmic channels that allow the flow of small molecules between cells. In animal cells, channels called gap junctions facilitate contact-dependent signaling in certain tissues, whereas, plasmodesmata perform a similar function in plants.
Gap Junctions
In animal cells, gap junctions are formed...
44.6K
Cell Signaling in Plants01:25

Cell Signaling in Plants

5.6K
Plant cells communicate to coordinate their cycle of growth, flowering and fruiting, and activities in roots, shoots, and leaves in response to the changing environmental conditions. Plant signaling is distinct from animal signaling. Plants primarily utilize enzyme-linked receptors, whereas the largest class of cell-surface receptors in animals are G-protein coupled receptors (GPCRs). Unlike animals, receptor tyrosine kinases are rare in plants. Instead, plants have a diverse class of...
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Cell Adhesion in Plants01:14

Cell Adhesion in Plants

2.7K
Plants have rigid cell walls that are made up of cell wall polysaccharides that mediate cell-cell adhesion. The primary cell walls of plants consist of two independent and interacting polysaccharide networks: a pectin matrix that embeds the second network comprising cellulose and hemicelluloses.
Pectins are complex heteropolymers mainly composed of negatively-charged α-D-glucopyranosyl uronic acid and some neutral glycosyl residues such as α-L-rhamnopyranose, α-L-arabinofuranose,...
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相关实验视频

Updated: Jul 1, 2025

Confocal Live Imaging of Shoot Apical Meristems from Different Plant Species
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Confocal Live Imaging of Shoot Apical Meristems from Different Plant Species

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射击美里系统中的细胞间通信

Edgar Demesa-Arevalo1, Madhumitha Narasimhan1, Rüdiger Simon1

  • 1Institute for Developmental Genetics, Heinrich Heine University, Düsseldorf, Germany;

Annual review of plant biology
|February 29, 2024
PubMed
概括

植物的发芽系统利用干细胞进行持续的器官生成. 涉及移动分子的信号通路调节这些关键的植物结构,整合内部和外部线索.

科学领域:

  • 植物发育生物学植物发育生物学
  • 植物中的分子信号传递.

背景情况:

  • 射出干细胞系统是重要的植物结构,含有未分化的干细胞.
  • 水系表现出圆顶形状,有组织的功能领域和复杂的细胞间通信网络.

研究的目的:

  • 审查了解射击分子过程的最新进展.
  • 讨论植物如何整合内部和外部信号来调节芽系统活动.

主要方法:

  • 关于植物发芽与植物系统信号传递的当前文献的综述.
  • 基于细胞间通信的分子机制的分析.

主要成果:

  • 确定了调解细胞间通信的关键移动分子 (转录因子,小RNA,荷尔蒙,).
  • 突出了膜局部受体在信号感知中的作用.
  • 强调了内部和外部输入的整合,以实现美里系统调节.

结论:

  • 射击梅里系统通过干细胞调节保持有机生成潜力.
  • 复杂的信号网络精确地控制了系统的功能.
  • 了解这些过程是植物发展的关键.
关键词:
克拉瓦塔 - 乌舍尔类受体的受体是什么?射击 更多 系统信号传输 信号传输干细胞是干细胞的组成部分.

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Shootward Movement of CFDA Tracer Loaded in the Bottom Sink Tissues of Arabidopsis

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