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相关概念视频

Background and Environment Affect Phenotype02:27

Background and Environment Affect Phenotype

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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...
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Epistasis Analysis01:09

Epistasis Analysis

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Although Mendel chose seven unrelated traits in peas to study gene segregation, most traits involve multiple gene interactions that create a spectrum of phenotypes. When the interaction of various genes or alleles at different locations influences a phenotype, this is called epistasis. Epistasis often involves one gene masking or interfering with the expression of another (antagonistic epistasis). Epistasis often occurs when different genes are part of the same biochemical pathway. The...
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Behavioral Genetics and Its Designs01:23

Behavioral Genetics and Its Designs

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Behavior genetics explores how genetic inheritance influences human behavior. It focuses on how genes, passed from parents to offspring, contribute to the development of behavioral traits and tendencies. This branch of genetics seeks to understand the complex interplay between inherited genetic factors and environmental influences in shaping our behaviors.
The primary methodologies used in behavior genetics include family studies, twin studies, and adoption studies, each providing unique...
384
Case Studies01:22

Case Studies

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There are many research methods available to psychologists in their efforts to understand, describe, and explain behavior and the cognitive and biological processes that underlie it.
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Epistasis01:39

Epistasis

46.9K
In addition to multiple alleles at the same locus influencing traits, numerous genes or alleles at different locations may interact and influence phenotypes in a phenomenon called epistasis. For example, rabbit fur can be black or brown depending on whether the animal is homozygous dominant or heterozygous at a TYRP1 locus. However, if the rabbit is also homozygous recessive at a locus on the tyrosinase gene (TYR), it will have an unshaded coat that appears white, regardless of its TYRP1...
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Genetic Lingo01:11

Genetic Lingo

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Overview
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相关实验视频

Updated: Jul 14, 2025

Visual and Microscopic Evaluation of Streptomyces Developmental Mutants
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Visual and Microscopic Evaluation of Streptomyces Developmental Mutants

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孟德尔没有研究常见的,自然存在的表型.

David Curtis1

  • 1UCL Genetics Institute, University College London, Darwin Building, Gower Street, London WC1E 6BT, UK.d.curtis@ucl.ac.uk.

Journal of genetics
|October 6, 2023
PubMed
概括

门德尔的遗传学,经常被误解,很少自然发生. 格雷戈尔·门德尔研究了人工培养豆类的特定特征,揭示了功能丧失突变,而不是常见变异.

科学领域:

  • 遗传学 是一个遗传学.
  • 分子生物学分子生物学
  • 进化生物学 进化生物学

背景情况:

  • 门德尔的遗传学经常被过度强调,导致公众对遗传变异的误解.
  • 格雷戈尔·门德尔的工作有时被误解为研究自然种群中身高等常见特征.
  • 由于这些误解,英国已将孟德尔从学校课程中删除.

研究的目的:

  • 为了澄清格雷戈尔·门德尔研究的特征的性质.
  • 解释为什么孟德尔遗传在自然种群中很罕见.
  • 建议在现代课程中准确地教授孟德尔遗传学的框架.

主要方法:

  • 孟德尔对豆植物交叉的原始实验的分析.
  • 关于特征遗传的现代分子遗传研究的综述.
  • 人工繁殖品种与自然发生的遗传变异的比较.

主要成果:

  • 孟德尔研究了一组有限的二分法特征在特别培养的豆品种.
  • 这些特征来自影响蛋白质活性的功能丧失突变,表现出衰退效应.
  • 现代遗传学证实,这些特定的表型符合孟德尔传染原理.

结论:

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  • 了解孟德尔的工作涉及人工交叉中的功能丧失突变是关键.
  • 这种澄清可以帮助将孟德尔遗传学重新整合到现代教育中.
  • 准确的孟德尔遗传学教学需要区分他的方法与自然变异研究.