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相关概念视频

Peptide Bonds02:43

Peptide Bonds

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A peptide bond covalently attaches amino acids through a dehydration reaction. One amino acid's carboxyl group and another amino acid's amino group combine, releasing a water molecule. The resulting bond is the peptide bond. The products that such linkages form are peptides. As more amino acids join this growing chain, the resulting chain is a polypeptide. Each polypeptide has a free amino group at one end. This end has the N-terminal, or the amino-terminal, and the other end has a free...
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Plant Hormones

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Plant hormones—or phytohormones—are chemical molecules that modulate one or more physiological processes of a plant. In animals, hormones are often produced in specific glands and circulated via the circulatory system. However, plants lack hormone-producing glands.
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Tonicity in Plants

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Tonicity describes the capacity of a cell to lose or gain water. It depends on the quantity of solute that does not penetrate the membrane. Tonicity delimits the magnitude and direction of osmosis and results in three possible scenarios that alter the volume of a cell: hypertonicity, hypotonicity, and isotonicity. Due to differences in structure and physiology, tonicity of plant cells is different from that of animal cells in some scenarios.
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The plant cell wall gives plant cells shape, support, and protection. As a cell matures, its cell wall specializes according to the cell type. For example, the parenchyma cells of leaves possess only a thin, primary cell wall.
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Plant tissues are collections of similar cells performing related functions. Different plant tissues will have their own specialized roles and can be combined with other tissues to form organs such as flowers, fruit, stem, and leaves. Two major types of plant tissue include meristematic and permanent tissue.
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Systemic signals control infection plasticity in parasitic plants.

Proceedings of the National Academy of Sciences of the United States of America·2025
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The peptide hormone <i>Pj</i>CLE1 stimulates haustorium formation in the parasitic plant <i>Phtheirospermum japonicum</i>.

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The Phtheirospermum japonicum isopentenyltransferase PjIPT1a regulates host cytokinin responses in Arabidopsis.

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相关实验视频

Updated: Feb 7, 2026

A Telemetric, Gravimetric Platform for Real-Time Physiological Phenotyping of Plant&#8211;Environment Interactions
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植物生物相互作用中的CLE.

Nicolas Frei Dit Frey1, Thomas Spallek2

  • 1Université de Toulouse, CNRS, Toulouse INP, LRSV, 31062 Toulouse Cedex 9, Toulouse, France.

The New phytologist
|February 6, 2026
PubMed
概括

植物激素,CLAVATA3/胚胎周围区域 (CLE) ,调节植物生物相互作用. 它们控制着共生关系和寄生虫的食点,影响着植物的发育和营养信号传递.

科学领域:

  • 植物生物学 植物生物学
  • 分子信号传输的方法
  • 生态生态学 生态生态学

背景情况:

  • 植物 - 生物相互作用涉及分子交换.
  • 像CLAVATA3/EMBRYO SURROUNDING REGION (CLE) 类的小激素是关键的调节剂.
  • 对于宿主来说,CLE平衡了共生成本和收益.

研究的目的:

  • 审查最近关于CLE的功能,受体和反应的发现.
  • 提供关于CLE在植物发育和营养信号传递中的复杂作用的见解.
  • 了解CLE在植物寄生虫相互作用中的作用.

主要方法:

  • 最近研究发现的文献综述.
  • 在各种生物相互作用中分析CLE的功能.
  • 综合关于CLE受体和下游反应的信息.

主要成果:

  • CLE调节了共生相互作用的程度.
  • 在寄生虫相互作用中,CLE控制了线虫食部位的形成.
  • 在寄生植物中,CLE促进haustoria的发展.

结论:

关键词:
状菌根的共生体是状的寄生植物 寄生植物植物类荷尔蒙 植物类荷尔蒙植物寄生性线虫线虫根结节的共生 根结节的共生

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  • CLE在植物发育中发挥着多方面的作用.
  • 在生物相互作用期间,CLE是营养物质交换中的关键信号分子.
  • 了解CLE提供了关于管理植物病原体和植物寄生虫关系的见解.