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相关概念视频

Seedless Vascular Plants03:24

Seedless Vascular Plants

Seedless Vascular Plants Were the First Tall Plants on Earth
Meristems and Plant Growth02:36

Meristems and Plant Growth

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.
Regulation of Transpiration by Stomata02:04

Regulation of Transpiration by Stomata

During photosynthesis, plants acquire the necessary carbon dioxide and release the produced oxygen back into the atmosphere. Openings in the epidermis of plant leaves is the site of this exchange of gasses. A single opening is called a stoma—derived from the Greek word for “mouth.” Stomata open and close in response to a variety of environmental cues.
Seed Structure and Early Development of the Sporophyte02:33

Seed Structure and Early Development of the Sporophyte

Seed structures are composed of a protective seed coat surrounding a plant embryo, and a food store for the developing embryo. The embryo contains the precursor tissues for leaves, stem, and roots. The endosperm and cotyledons—seed leaves—act as the food reserves for the growing embryo.
Plant Hormones01:56

Plant Hormones

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.
Transgenic Plants02:50

Transgenic Plants

Recombinant DNA technology called transgenesis is often used to add a foreign gene or remove a detrimental gene from an organism. Such genetically modified organisms are called transgenic organisms.
The first-ever transgenic plant was a tobacco plant developed in 1983 that showed resistance against the tobacco mosaic virus. Since then, many transgenic plants have been developed and commercialized for improving the agricultural, ornamental, and horticultural value of a crop plant. Transgenic...

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相关实验视频

Updated: Jul 13, 2026

A Seed Coat Bedding Assay to Genetically Explore In Vitro How the Endosperm Controls Seed Germination in Arabidopsis thaliana
08:52

A Seed Coat Bedding Assay to Genetically Explore In Vitro How the Endosperm Controls Seed Germination in Arabidopsis thaliana

Published on: November 9, 2013

烟雾中的一种化合物,促进了种子发芽.

Gavin R Flematti1, Emilio L Ghisalberti, Kingsley W Dixon

  • 1School of Biomedical and Chemical Sciences, University of Western Australia, Crawley, WA 6009, Australia. gflematt@chem.uwa.edu.au

Science (New York, N.Y.)
|July 13, 2004
PubMed
概括

烟雾中含有一种促进种子发芽的化合物. 这种布丁化物,3-甲基-2H-furo[2,3-c]pyran-2-one,有效地刺激各种植物物种的发芽,类似于烟水.

科学领域:

  • 植物生物学 植物生物学
  • 化学生态化学生态学
  • 生态生态学 生态生态学

背景情况:

  • 暴露在烟雾中刺激了许多植物物种的种子发芽.
  • 负责这种效果的特定化学化合物尚未完全理解.

研究的目的:

  • 为了识别植物和纤维素衍生的烟雾中促进发芽的化合物.
  • 确认已识别的化合物的结构和有效性.

主要方法:

  • 用光谱分析来推断该化合物的结构.
  • 进行化学合成以确认结构.
  • 在各种植物物种上使用合成的化合物进行了发芽试验.

主要成果:

  • 促进发芽的化合物被确定为3-甲基-2H-furo[2,3-c]pyran-2-one (1).
  • 化合物1在多种植物物种中显著促进了种子发芽.
  • 化合物1的疗效与植物衍生烟水的疗效相当.

结论:

  • 3-甲基-2H-furo[2,3-c]pyran-2-one是一种主要的烟雾衍生化合物,促进了种子发芽.
  • 这一发现提供了关于烟雾刺激发芽的化学机制的洞察力.

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Preparation of Intact Tissue for Microscopic Analysis of the Endosperm Cell Layer in Developing and Mature Arabidopsis Seeds
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Preparation of Intact Tissue for Microscopic Analysis of the Endosperm Cell Layer in Developing and Mature Arabidopsis Seeds

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A Seed Coat Bedding Assay to Genetically Explore In Vitro How the Endosperm Controls Seed Germination in Arabidopsis thaliana
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Preparation of Intact Tissue for Microscopic Analysis of the Endosperm Cell Layer in Developing and Mature Arabidopsis Seeds

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  • 鉴定的化合物在农业和生态恢复方面具有潜在的应用.