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相关概念视频

Background and Environment Affect Phenotype02:27

Background and Environment Affect Phenotype

Although the genetic makeup of an organism plays a major role in determining the phenotype, there are also several environmental factors, such as temperature, oxygen availability, presence of mutagens, that can alter an organism’s phenotype.
An example of how genetic background affects phenotype can be seen in horses. The Extension gene in horses is responsible for their coat color. A wild-type gene (EE) produces black pigment in the coat, while a mutant gene (ee) produces red pigment. A...
Hypersensitivities01:30

Hypersensitivities

Hypersensitivity, also known as a hypersensitivity reaction or allergic reaction, is a condition where the body's immune system reacts abnormally to a foreign substance. Such substances, that cause hypersensitivity are referred to as an allergen, could be something typically harmless to most people, like pollen or certain foods.
Types of Hypersensitivities
Hypersensitivity reactions are categorized into four types: Type 1, Type 2, Type 3, and Type 4. Each type has a distinct mechanism...
Disorder of Water Balance01:29

Disorder of Water Balance

Water balance disorders are medical conditions that occur when there is a deviation from the body's water volume or osmolarity, disrupting normal homeostasis and leading todehydration, hypotonic hydration, hyperhydration, edema, or water intoxication.
Dehydration
Dehydration occurs when the body loses fluids (particularly water).
Causes:
The major causes of dehydration include excessive sweating, fever, vomiting, diarrhea, and diuresis.
Signs and Symptoms:
Symptoms primarily include intense...
Drug Toxicity: Allergic Reactions01:30

Drug Toxicity: Allergic Reactions

Drug-related allergies are immune-mediated responses triggered by the administration of pharmacological agents. These hypersensitivity reactions are classified based on the immune mechanisms involved. The four primary types—Type I, II, III, and IV—are mediated by different immunological pathways and exhibit distinct clinical manifestations.Type I Hypersensitivity/ IgE-Mediated Reactions: Immunoglobulin E (IgE) immediately mediates Type I hypersensitivity reactions. Upon initial exposure to a...
Hypersensitivity Reactions: Delayed Hypersensitivity Reactions01:29

Hypersensitivity Reactions: Delayed Hypersensitivity Reactions

Delayed-Type Hypersensitivity (DTH), or Type IV hypersensitivity, is a cell-mediated immune response. It occurs when T cells, rather than antibodies, mediate a reaction to specific antigens. It is characterized by a delayed onset (1-2 days) and involves the recruitment of macrophages to the inflammation site.The initiation of a DTH response begins with the sensitization of T cells. During this phase, which lasts at least 1-2 weeks, antigen-specific T cells are activated, clonally expanded, and...
Hypersensitivity Reactions: Immune-Complex Reactions01:19

Hypersensitivity Reactions: Immune-Complex Reactions

Type III hypersensitivity reactions occur when antigen–antibody complexes form and activate the complement system. Normally, these complexes help the clearance of antigens by phagocytes and red blood cells. However, when large numbers of immune complexes are present, they can deposit in tissues—particularly in the walls of blood vessels—leading to inflammation and tissue injury. These deposits trigger complement activation and neutrophil recruitment, resulting in serum sickness, a systemic...

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相关实验视频

Updated: Jun 11, 2026

Isolating Potentiated Hsp104 Variants Using Yeast Proteinopathy Models
08:44

Isolating Potentiated Hsp104 Variants Using Yeast Proteinopathy Models

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对重水过敏:一种新的条件表型.

B Bartel1, A Varshavsky

  • 1Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.

Cell
|March 25, 1988
PubMed
概括

研究人员开发了一种使用重水 (D2O) 制造酵母条件突变的新方法. 这种对D2O敏感的 (ds) 突变技术为遗传研究提供了一种新的方法,特别是在不易用温度敏感方法研究的生物中.

科学领域:

  • 遗传学和分子生物学
  • 酵母模型生物的酵母模型生物.
  • 生物化学 生物化学

背景情况:

  • 野生类型酵母菌株 (Saccharomyces cerevisiae) 在重水 (D2O) 中表现出生长.
  • 像温度敏感 (ts) 突变这样的传统方法被广泛用于条件遗传学.
  • 对某些基因和生物体的TS和冷敏 (cs) 方法存在局限性.

研究的目的:

  • 开发和描述一种新的D2O敏感 (ds) 突变选方法,用于酵母菌中的突变选.
  • 评估突变的频率和遗传分布.
  • 评估ds技术在产生先前难以处理的基因条件突变以及在遗传学中更广泛的应用方面的实用性.

主要方法:

  • 野生类型酵母 (S. cerevisiae) 的化学突变.
  • 选不能在90%D2O介质上生长的突变,但能够在H2O介质上生长的突变.
  • 补充分析以确定d突变在补充组中的分布.
  • ds突变体对其他条件敏感性 (热,冷,透) 的表型特征.

主要成果:

  • 获得了对D2O敏感 (ds) 突变的显著频率,与对温度敏感 (ts) 突变相美.
  • 发现ds突变分布在众多补充组中.

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Isolating Potentiated Hsp104 Variants Using Yeast Proteinopathy Models
08:44

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Induction and Characterization of Pulmonary Hypertension in Mice using the Hypoxia/SU5416 Model

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  • 大多数DS突变体没有表现出其他条件表型;相反,很少有细胞分裂周期TS突变体也是DS突变体.
  • 结论:

    • D2O敏感度 (ds) 技术是产生条件突变的有价值的新方法.
    • 这种方法对于不能接受传统TS或CS查的基因特别有用.
    • ds技术有可能在同热动物,包括哺乳动物和鸟类中产生条件突变.